Tumgik
#and on 19% battery without a source of charging
soullessjack · 9 months
Text
i think perhaps one of the most evil things supernatural ever did was establish involuntary teleportation as a literal flight response for jack when they’re extremely distressed and then show his location flitting around the fucking globe on sam’s gps after he accidentally blew mary to kingdom come
22 notes · View notes
keretamoto · 7 days
Text
Embrace the epitome of automotive innovation with the Tesla Model Y. As a trailblazer in the realm of electric vehicles, Tesla continues to redefine the driving experience. In this comprehensive review, we delve into the dimensions, performance, and technological marvels that make the Model Y a standout choice in the electric SUV market. With dimensions that exude both elegance and practicality, the Tesla Model Y offers ample space for both passengers and cargo. Its generous cargo volume of 854 liters ensures that you never have to compromise on storage capacity, while its sleek design, measuring 4750mm in length, 1921mm in width, and 1624mm in height, guarantees a commanding presence on the road. Powered by a cutting-edge lithium-ion battery, the Model Y boasts impressive performance metrics. Its Permanent Magnet Synchronous Motor delivers 201 horsepower and a torque of 350 Nm, ensuring exhilarating acceleration and seamless handling. With a battery capacity of 57.5 kWh, the Model Y offers a driving range of 455 km, providing the freedom to explore without the constraints of traditional fuel sources. Experience the convenience of lightning-fast charging with the Tesla Model Y. With DC charging from 10 to 80% in just 25 minutes, and AC charging from 0 to 100% in 9 hours, recharging your vehicle has never been easier. Say goodbye to long waits at the charging station and hello to uninterrupted adventures on the open road. Step into the future with an array of state-of-the-art features that elevate the driving experience. From power steering and tilt & telescopic steering column to rack & pinion steering gear, the Model Y offers unparalleled control and precision. With chassis control systems, multi-link suspension, and ventilated disc brakes, every journey is a testament to engineering excellence. Sleek, stylish, and environmentally conscious, the Tesla Model Y sets a new standard for sustainable luxury. Featuring 19-inch alloy wheels, radial tires, and a minimalist yet sophisticated exterior, this electric SUV is as visually stunning as it is eco-friendly. Say goodbye to fossil fuels and hello to a greener, more sustainable future. In a world where sustainability meets performance, the Tesla Model Y reigns supreme. With its spacious interior, exhilarating performance, and cutting-edge technology, this electric SUV represents the pinnacle of automotive innovation. Whether you're cruising through city streets or embarking on a cross-country adventure, the Model Y delivers an unparalleled driving experience that is as exhilarating as it is eco-conscious. Join the electric revolution today and redefine the way you drive with the Tesla Model Y.
0 notes
jcmarchi · 21 days
Text
Unlocking new science with devices that control electric power - Technology Org
New Post has been published on https://thedigitalinsider.com/unlocking-new-science-with-devices-that-control-electric-power-technology-org/
Unlocking new science with devices that control electric power - Technology Org
Tumblr media Tumblr media
Mo Mirvakili PhD ’17 was in the middle of an experiment as a postdoc at MIT when the Covid-19 pandemic hit. Grappling with restricted access to laboratory facilities, he transformed his bathroom into a makeshift lab. Arranging a piece of plywood over the bathtub to support power sources and measurement devices, he conducted a study that was later published in Science Robotics, one of the top journals in the field.
The adversity made for a good story, but the truth is that it didn’t take a global pandemic to force Mirvakili to build the equipment he needed to run his experiments. Even when working in some of the most well-funded labs in the world, he needed to piece together tools to bring his experiments to life.
“My journey reflects a broader truth: With determination and resourcefulness, many of us can achieve remarkable things,” he says. “So many people don’t have access to labs yet have great ideas. We need to make it easier for them to bring their experiments to life.”
That’s the idea behind Seron Electronics, a company Mirvakili founded to democratize scientific experimentation. Seron develops scientific equipment that precisely sources and measures power, characterizes materials, and integrates data into a customizable software platform.
By making sophisticated experiments more accessible, Seron aims to spur a new wave of innovation across fields as diverse as microelectronics, clean energy, optics, and biomedicine.
“Our goal is to become one of the leaders in providing accurate and affordable solutions for researchers,” Mirvakili says. “This vision extends beyond academia to include companies, governments, nonprofits, and even high school students. With Seron’s devices, anyone can conduct high-quality experiments, regardless of their background or resources.”
Feeling the need for constant power
Mirvakili earned his bachelor’s and master’s degrees in electrical engineering, followed by a PhD in mechanical engineering under MIT Professor Ian Hunter, which involved developing a class of high-performance thermal artificial muscles, including nylon artificial muscles. During that time, Mirvakili needed to precisely control the amount of energy that flowed through his experimental setups, but he couldn’t find anything online that would solve his problem.
“I had access to all sorts of high-end equipment in our lab and the department,” Mirvakili recalls. “It’s all the latest, state-of-the-art stuff. But I had to bundle all these outside tools together for my work.”
After completing his PhD, Mirvakili joined Institute Professor Bob Langer’s lab as a postdoc, where he worked directly with Langer on a totally different problem in biomedical engineering. In Langer’s famously prolific lab, he saw researchers struggling to control temperatures at the microscale for a device that was encapsulating drugs.
Mirvakili realized the researchers were ultimately struggling with the same set of problems: the need to precisely control electric current, voltage, and power. Those are also problems Mirvakili has seen in his more recent research into energy storage and solar cells. After speaking with researchers at conferences from around the world to confirm the need was widespread, he started Seron Electronics.
Seron calls the first version of its products the SE Programmable Power Platforms. The platforms allow users to source and measure precisely defined quantities of electrical voltage, current, power, and charge through a desktop application with minimal signal interference, or noise.
The equipment can be used to study things like semiconductor devices, actuators, and energy storage devices, or to precisely charge batteries without damaging their performance.
The equipment can also be used to study material performance because it can measure how materials react to precise electrical stimulation at a high resolution, and for quality control because it can test chips and flag problems.
The use cases are varied, but Seron’s overarching goal is to enable more innovation faster.
“Because our system is so intuitive, you reduce the time to get results,” Mirvakili says. “You can set it up in less than five minutes. It’s plug-and-play. Researchers tell us it speeds things up a lot.”
New frontiers
In a recent paper Mirvakili coauthored with MIT research affiliate Ehsan Haghighat, Seron’s equipment provided constant power to a thermal artificial muscle that integrated machine learning to give it a sort of muscle memory. In another study Mirvakili was not involved in, a nonprofit research organization used Seron’s equipment to identify a new, sustainable sensor material they are in the process of commercializing.
Many uses of the machines have come as a surprise to Seron’s team, and they expect to see a new wave of applications when they release a cheaper, portable version of Seron’s machines this summer. That could include the development of new bedside monitors for patients that can detect diseases, or remote sensors for field work.
Mirvakili thinks part of the beauty of Seron’s devices is that people in the company don’t have to dream up the experiments themselves. Instead, they can focus on providing powerful scientific tools and let the research community decide on the best ways to use them.
“Because of the size and the cost of this new device, it will really open up the possibilities for researchers,” Mirvakili says. “Anyone who has a good idea should be able to turn that idea into reality with our equipment and solutions. In my mind, the applications are really unimaginable and endless.”
Written by Zach Winn
Source: Massachusetts Institute of Technology
You can offer your link to a page which is relevant to the topic of this post.
0 notes
sunaleisocial · 26 days
Text
Unlocking new science with devices that control electric power
New Post has been published on https://sunalei.org/news/unlocking-new-science-with-devices-that-control-electric-power/
Unlocking new science with devices that control electric power
Tumblr media
Mo Mirvakili PhD ’17 was in the middle of an experiment as a postdoc at MIT when the Covid-19 pandemic hit. Grappling with restricted access to laboratory facilities, he decided to transform his bathroom into a makeshift lab. Arranging a piece of plywood over the bathtub to support power sources and measurement devices, he conducted a study that was later published in Science Robotics, one of the top journals in the field.
The adversity made for a good story, but the truth is that it didn’t take a global pandemic to force Mirvakili to build the equipment he needed to run his experiments. Even when working in some of the most well-funded labs in the world, he needed to piece together tools to bring his experiments to life.
“My journey reflects a broader truth: With determination and resourcefulness, many of us can achieve remarkable things,” he says. “There are so many people who don’t have access to labs yet have great ideas. We need to make it easier for them to bring their experiments to life.”
That’s the idea behind Seron Electronics, a company Mirvakili founded to democratize scientific experimentation. Seron develops scientific equipment that precisely sources and measures power, characterizes materials, and integrates data into a customizable software platform.
By making sophisticated experiments more accessible, Seron aims to spur a new wave of innovation across fields as diverse as microelectronics, clean energy, optics, and biomedicine.
“Our goal is to become one of the leaders in providing accurate and affordable solutions for researchers,” Mirvakili says. “This vision extends beyond academia to include companies, governments, nonprofits, and even high school students. With Seron’s devices, anyone can conduct high-quality experiments, regardless of their background or resources.”
Feeling the need for constant power
Mirvakili earned his bachelor’s and master’s degrees in electrical engineering, followed by a PhD in mechanical engineering under MIT Professor Ian Hunter, which involved developing a class of high-performance thermal artificial muscles, including nylon artificial muscles. During that time, Mirvakili needed to precisely control the amount of energy that flowed through his experimental setups, but he couldn’t find anything online that would solve his problem.
“I had access to all sorts of high-end equipment in our lab and the department,” Mirvakili recalls. “It’s all the latest, state-of-the-art stuff. But I had to bundle all these outside tools together for my work.”
After completing his PhD, Mirvakili joined Institute Professor Bob Langer’s lab as a postdoc, where he worked directly with Langer on a totally different problem in biomedical engineering. In Langer’s famously prolific lab, he saw researchers struggling to control temperatures at the microscale for a device that was encapsulating drugs.
Mirvakili realized the researchers were ultimately struggling with the same set of problems: the need to precisely control electric current, voltage, and power. Those are also problems Mirvakili has seen in his more recent research into energy storage and solar cells. After speaking with researchers at conferences from around the world to confirm the need was widespread, he started Seron Electronics.
Seron calls the first version of its products the SE Programmable Power Platforms. The platforms allow users to source and measure precisely defined quantities of electrical voltage, current, power, and charge through a desktop application with minimal signal interference, or noise.
The equipment can be used to study things like semiconductor devices, actuators, and energy storage devices, or to precisely charge batteries without damaging their performance.
The equipment can also be used to study material performance because it can measure how materials react to precise electrical stimulation at a high resolution, and for quality control because it can test chips and flag problems.
The use cases are varied, but Seron’s overarching goal is to enable more innovation faster.
“Because our system is so intuitive, you reduce the time to get results,” Mirvakili says. “You can set it up in less than five minutes. It’s plug-and-play. Researchers tell us it speeds things up a lot.”
New frontiers
In a recent paper Mirvakili coauthored with MIT research affiliate Ehsan Haghighat, Seron’s equipment provided constant power to a thermal artificial muscle that integrated machine learning to give it a sort of muscle memory. In another study Mirvakili was not involved in, a nonprofit research organization used Seron’s equipment to identify a new, sustainable sensor material they are in the process of commercializing.
Many uses of the machines have come as a surprise to Seron’s team, and they expect to see a new wave of applications when they release a cheaper, portable version of Seron’s machines this summer. That could include the development of new bedside monitors for patients that can detect diseases, or remote sensors for field work.
Mirvakili thinks part of the beauty of Seron’s devices is that people in the company don’t have to dream up the experiments themselves. Instead, they can focus on providing powerful scientific tools and let the research community decide on the best ways to use them.
“Because of the size and the cost of this new device, it will really open up the possibilities for researchers,” Mirvakili says. “Anyone who has a good idea should be able to turn that idea into reality with our equipment and solutions. In my mind, the applications are really unimaginable and endless.”
0 notes
santoshreportprime · 7 months
Text
Lithium ion Battery Charger Market Growth, Trend, and Prospects from 2023–2030
Tumblr media
Lithium ion Battery Charger Market Growth
The Lithium ion Battery Charger Market is expected to grow from USD 1.90 Billion in 2022 to USD 3.30 Billion by 2030, at a CAGR of 7.00% during the forecast period.
Get a Sample PDF of the report: https://www.reportprime.com/enquiry/sample-report/11291
Lithium ion Battery Charger Market Size
A Lithium ion battery charger is an electronic device that charges rechargeable lithium ion batteries. The Lithium ion Battery Charger Market Research Report focuses on market segmentation based on type, including Switching Battery Chargers, Linear Battery Chargers, and Pulse Battery Chargers, as well as segmentation based on application, including Industrial, Commercial, Residential, and Government, across regions such as North America, Asia Pacific, Middle East, Africa, Australia, and Europe. Key players in the market include Silergy Corporation, Holtek Semiconductors Inc., ON Semiconductor Corporation, New Japan Radio Co., Texas Instruments Inc., Analog Devices Inc., Richtek Technology Corporation, NXP Semiconductors N.V., Toshiba Corporation, Maxim Integrated, Future Technology Devices International, Shanghai Nanxin Semiconductor Technology Co. Ltd., Diodes Incorporated, Microchip Technology Inc., TOREX Semiconductor Ltd., STMicroelectronics N.V., ROHM Company Ltd., Monolithic Power Systems, Active-Semi, Vishay Intertechnology Inc., and Intersil Corporation. The report also covers regulatory and legal factors specific to market conditions.
Lithium ion Battery Charger Market Key Players
Major Key Player is listed in the Lithium ion Battery Charger Market
Silergy Corporation (China)
Holtek Semiconductors Inc. (China)
ON Semiconductor Corporation (U.S.)
New Japan Radio Co.
Texas Instruments Inc. (U.S.)
Buy Now & Get Exclusive Discount on this: https://www.reportprime.com/enquiry/request-discount/11291
Lithium ion Battery Charger Market Segment Analysis
The lithium ion battery charger market has seen significant growth in recent years, thanks to the increasing demand for portable electronic devices, electric vehicles and renewable energy storage systems. The market is expected to continue its growth trajectory, with a projected compound annual growth rate (CAGR) of 10.72% between 2021–2026.
The major factors driving revenue growth of the lithium ion battery charger market include the growing demand for electric vehicles, the shift towards sustainable energy sources, and the increasing penetration of portable electronic devices. The demand for electric vehicles is expected to grow rapidly, owing to government initiatives and subsidies promoting the adoption of electric vehicles and also incentives to set up EV charging stations. Furthermore, the demand for renewable energy storage systems, such as lithium-ion batteries installed by households or companies, is on the rise, further driving the demand for lithium-ion battery chargers.
The latest trends in the market include the integration of smart features such as wireless charging and the development of fast charging capabilities. The integration of smart features allows the charger to quickly identify the device and adjust the charging speed and amount of power accordingly. This is popular among consumers who value convenience and time efficiency. The development of fast charging capabilities has also been a trend in the market. Recently, manufacturers have introduced fast charging solutions that can charge a mobile device within a few minutes, which is particularly important for busy individuals who are constantly on the go.
However, the lithium ion battery charger market is not without challenges. One of the primary challenges faced by the market is the volatility of the raw material prices, which can affect the production cost of the battery chargers. Additionally, the outbreak of Covid-19 has impacted the supply chain, causing delays and shortage of raw materials and components that has hampered the overall growth of the lithium ion battery charger market to a certain extent.
Overall, the report suggests that the growing demand for electric vehicles and renewable energy storage systems along with the integration of smart features and technology advancements continue to drive the growth of the lithium ion battery charger market. The report recommends manufacturers to focus on cost efficiency, product innovation, and collaborations with leading companies to strengthen their product portfolio and market presence.
This report covers impact on COVID-19 and Russia-Ukraine wars in detail.
Market Segmentation (by Application)
Industrial
Commercial
Residential
Government
Information is sourced from https://www.reportprime.com/
Purchase This Report: https://www.reportprime.com/checkout?id=11291&price=3590
0 notes
thomas-mallet · 10 months
Text
Innovative Ways to Use Your Rechargeable Generator During Emergencies and Blackouts
Tumblr media
Introduction
Emergencies and blackouts can be stressful and overwhelming, especially if you are not prepared. Having a rechargeable generator can make a significant difference in these situations. In this article, we will explore innovative ways to use your rechargeable generator during emergencies and blackouts, and help you make the most out of this essential tool.
The Basics of Rechargeable Generators
Before we dive into the innovative ways to use your rechargeable generator, let's make sure we understand the basics. A rechargeable generator is a device that uses battery power to create electricity. It typically comes with an AC adapter that can charge from a standard wall outlet. When fully charged, it can provide power to various devices that require electricity, such as mobile phones, laptops, and even small appliances.
According to a recent study by the New York State Energy Research and Development Authority, rechargeable generators are becoming increasingly popular due to their cost-effectiveness, ease of use, and low maintenance.
Survival Preparation
One of the most popular ways to use a rechargeable generator during emergencies and blackouts is for survival preparation. You can use your generator to power an emergency radio or communication device, which will help you stay informed about the situation and alert authorities if necessary.
In addition, you can use your rechargeable generator to power a portable stove or heater, which will provide warmth and light in case of a prolonged power outage. This will ensure that you and your loved ones stay comfortable and safe during a blackout.
Outdoor Activities
Another innovative way to use your rechargeable generator is during outdoor activities. If you are planning a camping trip or a picnic, you can use your generator to power a portable refrigerator or freezer, which will keep your food and drinks cold and fresh. You can also use it to power outdoor lights or a portable sound system to create a fun and relaxing atmosphere.
Working From Home
The COVID-19 pandemic has forced many people to work from home, which has highlighted the importance of having a reliable power source. In case of a power outage, a rechargeable generator can keep your essential devices, such as your computer, internet modem, or phone charged, allowing you to continue working remotely without interruption.
Conclusion
A rechargeable generator is a versatile and essential tool that can help you stay prepared during emergencies and enjoy outdoor activities. It can also be an excellent backup power source for your home office. By understanding the basics of rechargeable generators and the innovative ways to use them, you can make the most out of this essential tool.
Source: None
0 notes
alliedcreation · 11 months
Text
Residential Robotic Vacuum Cleaner Market Size, Growth Analysis, Opportunities, Business Outlook and Forecast to 2023-2032
Residential robotic vacuum cleaner is an automatic cleaner that starts with a button press or works by a remote. They can vacuum under beds, tables, seats, and corners without facing any difficulty. Advances in mechanical technologies, which include robotics, have prompted the improvement of profoundly refined and robotized vacuum cleaner. These are upheld with infrared sensors that give a legitimate way to maintain a strategic distance from obstacles. They work remotely and are programmed in a way that when batteries run short, they charge automatically returning to the power source. The market is experiencing the presentation of automated vacuum cleaners coordinated with most recent advances, for example, high turbo power, Wi-Fi, and IoT. Such highlights give comfort to the end clients, which boosts the adoption of robotic vacuum cleaners.
Request for sample:-https://www.alliedmarketresearch.com/request-toc-and-sample/6874
COVID-19 Scenario Analysis:
Due to COVID-19, lockdown is implemented to decrease the spread of the pandemic globally. Therefore, people have now started working from home. Work from home is not an easy task as people are now managing their household work along with their office work simultaneously. This situation has generated the demand for residential robotic vacuum cleaner where the robotic machine is cleaning the house automatically. The mess that people are creating while working at home, can be taken care by the robotic vacuum cleaner.
Request For Customization:-https://www.alliedmarketresearch.com/request-for-customization/6874
Top Impacting Factors: Market Scenario Analysis, Trends, Drivers and Impact Analysis
The most recent pattern picking up momentum in the market is additional highlights in robot vacuum cleaners. As the prevalence of robot vacuum cleaners is expanding, sellers are concentrating on creating progressed and innovative products to upgrade adaptability and improve connectivity with the cloud, computerization, and IoT. One of the significant drivers for this market is busy lifestyle in urban zones. Urban shoppers have busy life but at the same time they like to indulge themselves in social and professional activities. Thus, people are not able to focus on household chores, which become challenging for them to maintain cleanliness. To beat these difficulties, purchasers want to purchase automated solution for cleaning, which drives the interest for residential robotic vacuum cleaner. The global residential robotic vacuum cleaner market is anticipated to grow because of dynamic aspects, for example, increase in purchasing power of the family and increase in expenditure for household cleaning machines and expanding mindfulness about indoor hygiene and cleanliness. The major factor affecting the development of this market is emergence of low-cost vendors. The residential robotic vacuum cleaner market is fragmented because of the existence of various sellers across various regions.
Purchase enquire:-https://www.alliedmarketresearch.com/purchase-enquiry/6874
New product launches to flourish the market
Now a days, robotic vacuum cleaner is available with various advance features. Some of them are Alexa and Google Assistant which not only vacuum but also scrub and mop. Also, with the advancement in technology, there has been an increase in the adoption of IoT in the robotic vacuum cleaner market. Now people are controlling their vacuum cleaner through their mobile devices. Companies are innovating with navigation technology through which robotic machines can take 360 degree view of the house and can identify which places to mob, scrub, or vacuum.
Surge in usage in automotive and industrial applications
As of now, the residential robotic vacuum cleaner are primarily available in the shape of a disc. Also, there are focal points of low force, low noise, and automatic cleaning, recharging, timer for cleaning, no consideration, saves time and energy when compared with traditional vacuum cleaner. The residential robotic vacuum cleaner industry had a huge growth development recently. A lot of families are picking up the robotic vacuum cleaner for their household cleaning purpose. The reduction of the household cleaning time has led to increase in the demand these vacuum cleaner. 
Key Benefits of the Report:
This study presents the analytical depiction of the global residential robotic vacuum cleaner market along with the current trends and future estimations to determine the imminent investment pockets.
The report presents information related to key drivers, restraints, and opportunities along with detailed analysis of the global residential robotic vacuum cleaner market share.
The current market is quantitatively analyzed to highlight the global residential robotic vacuum cleaner market growth scenario.
Porter’s five forces analysis illustrates the potency of buyers & suppliers in the market.
The report provides a detailed global residential robotic vacuum cleaner market analysis based on competitive intensity and how the competition will take shape in coming years.
Questions Answered in the Residential Robotic Vacuum Cleaner Market Research Report:
What are the leading market players active in the residential robotic vacuum cleaner market?
What the current trends will influence the market in the next few years?
What are the driving factors, restraints, and opportunities in the market?
What future projections would help in taking further strategic steps?
 Residential Robotic Vacuum Cleaner Market Report HighlightsAspectsDetailsBy Type
Self-drive Robot
Remote Control Robot
By Application
Floor Vacuum Cleaning
Window Vacuum Cleaning
Pool Vacuum Cleaning
Others
By Region
North America  (U.S., Canada, Mexico)
Europe  (France, Germany, Italy, Spain, UK, Russia, Rest of Europe)
Asia-Pacific  (China, Japan, India, South Korea, Australia, Thailand, Malaysia, Indonesia, Rest of Asia-Pacific)
LAMEA  (Brazil, South Africa, Saudi Arabia, UAE, Argentina, Rest of LAMEA)
Key Market PlayersDyson Ltd., Neato Robotics, Inc., Cecotec Innovaciones Sl, Ecovacs Robotics Ltd., iRobot Corporation, Samsung Electronics, Robert Bosch GmbH, Black Decker Inc., Electrolux AB, Panasonic Corporation, Haier Group Corporation, Miele & Cie. KG., Koninklijke Philips N.V., LG Electronics Inc., Shark Ninja Operating LLC, Bissel Inc
0 notes
lithiumbatterytech · 11 months
Text
Unlock the Power of Your Rack with a rack mount lifepo4 battery
If you're looking for a reliable and efficient power source for your rack mount equipment, a LiFePO4 battery might be just what you need. In this article, we'll explore what a rack mount LiFePO4 battery is, how it works, and why it might be the perfect solution for your power needs.
Tumblr media
What is a Rack Mount LiFePO4 Battery?
A rack mount LiFePO4 battery is a type of rechargeable battery designed to provide reliable power to rack mount equipment. These batteries are specifically designed to fit into a standard 19-inch server rack, making them an ideal solution for data centers and other applications where space is limited.
LiFePO4 batteries are a type of lithium-ion battery that uses lithium iron phosphate as the cathode material. This makes them more durable and longer-lasting than other types of lithium-ion batteries, making them an ideal choice for high-demand applications.
How Does a Rack Mount LiFePO4 Battery Work?
A rack mount LiFePO4 battery works by storing energy in its cells and releasing it as needed to power equipment. When the battery is charged, energy is stored in the cells as lithium ions move from the cathode to the anode. When the battery is discharged, the reverse happens, and the lithium ions move from the anode to the cathode, releasing the stored energy.
One of the benefits of LiFePO4 batteries is their high energy density, which means they can store a significant amount of energy in a relatively small space. This makes them ideal for rack mount applications, where space is limited.
Why Choose a Rack Mount LiFePO4 Battery?
There are several reasons why you might choose a rack mount LiFePO4 battery for your power needs:
1. High Efficiency: LiFePO4 batteries are highly efficient, which means they can provide reliable power to your equipment for an extended period without needing to be recharged.
2. Long Lifespan: LiFePO4 batteries have a longer lifespan than other types of lithium-ion batteries, making them an ideal choice for applications where reliability and longevity are essential.
3. Fast Charging: LiFePO4 batteries can be charged quickly, which means they can be recharged in a relatively short amount of time, allowing you to get back to using your equipment as soon as possible.
4. Safe and Reliable: LiFePO4 batteries are known for their safety and reliability, making them an ideal choice for applications where downtime is not an option.
5. Environmentally Friendly: LiFePO4 batteries are more environmentally friendly than other types of lithium-ion batteries, as they do not contain toxic materials such as cobalt or nickel.
Final Thoughts
If you're looking for a reliable and efficient power source for your rack mount equipment, a LiFePO4 battery might be the perfect solution. With their high efficiency, long lifespan, fast charging, safety, and reliability, these batteries offer a range of benefits that make them an ideal choice for a variety of applications. Whether you're running a data center, a telecommunications network, or any other type of equipment that requires reliable power, a rack mount LiFePO4 battery can provide the energy you need to keep your operations running smoothly.
0 notes
erinpilolla · 1 year
Photo
Tumblr media Tumblr media
Truck Companies Start Down the Road of Electrification, But Limitations Remain
Overall demand for battery powered trucks has been increasing, especially surging during the COVID-19 pandemic, according to Robert Ferris, a writer for CNBC. The market for electric trucks is expected to sit at almost 4 billion dollars by the year 2030.
Freight trucking has thus begun to make the transition to electric power, utilizing the new technology mainly for short haul distances due to the current limitations a longer interstate trip presents. Karl Hanson, a student at Washington State University who is studying mechanical engineering, surmised that the main reason battery-powered trucks aren’t being used for longer trips yet is because of the lack of charging stations available and the relatively short-range batteries provide.
“Batteries are heavy and present unique challenges. The more charge they stand to hold, the heavier they become, therefore creating a weight issue when the range issue is solved,” he explained.
Current battery technology available for electric trucks are only able to travel around 150 miles before needing to be recharged. Charging stations are few and far between compared to fuel stations, so without a significant change in infrastructure it would be difficult for freight companies to go fully electric.
When asked whether electric energy could ever be the main source of energy businesses rely on for transportation Hanson said,
“It’s tough to say right now, considering the infrastructure issues and hydrogen energy being a promising alternative, but I could see it coming up and being useful for specific applications. For medium duty trucks and short ranges, battery power works great.”
Packaging presents another challenge in electrifying transportation. Fitting an electric powertrain into a chassis designed for a diesel engine is difficult since some systems don’t directly transfer. New designs have to be made to fit different components of a battery powered system.
Manufacturers like PACCAR are going a different direction and starting from scratch, designing a purpose-built electric truck chassis. PACCAR Technical Center was recently given a grant from the U.S Department of Energy, aimed to help research and develop alternative energy sources for freight with an emphasis on reliability.
The company is located in Mount Vernon, Washington, and specializes in the development of medium and heavy-duty trucks. Opened in 1982, PACCAR Technical Center facilitates the majority of the testing, validation, and integration for Kenworth and Peterbilt trucks. They often work on projects years ahead of when they finally hit the public eye.
Alan Obra has worked there since 2021 and gets to see everything from the ground floor, working on trucks both publicly sold and some that are still secret. Talking about the recent trend of electrification and why it may take a while to roll out he said,
“There is a great need for truck drivers, and with electric vehicles being unproven they are skeptical. We don’t want to upset what truck drivers we already have by changing their routines.”
He hinted at a resentment that many truck drivers and trucking companies have for electric vehicles due to them being new, unproven technology with difficulties in using. Converting people to a new way of thinking has never been easy.
In the end, PACCAR, as well as many other companies, seem to have adopted the strategy of patience and diversification. Conducting thorough research and continuing to provide both traditional and newer forms of energy will theoretically help these companies avoid major losses down the line and be well prepared for whatever is thrown at them.
_____________________________________________________
Figure 1 - A Kenworth W900 Rolls Down the Road (Unsplash.com)
Figure 2 -  Trucks Sit in a Warehouse, Awaiting Use (Unsplash.com)
Robert Ferris. (2023, January 25). Demand for semitrucks is surging, and four companies stand to benefit. CNBC. Retrieved February 18, 2023, from https://www.cnbc.com/2023/01/25/making-americas-semitrucks.html 
Bianca Giacobone. (2023, February 4). Electric semi-trucks are ready to be deployed, but there aren't near enough plugs to charge them. Yahoo! News. Business Insider. Retrieved February 17, 2023, from https://news.yahoo.com/electric-semi-trucks-ready-deployed-125500476.html?guccounter=1&guce_referrer=aHR0cHM6Ly93d3cuZ29vZ2xlLmNvbS8&guce_referrer_sig=AQAAANSyDbye9CDJhuDy-3WGMTAaZEW3AIuHxWbXbhX3U9RXkwnMzy1Rw9r1z7W3l0q-M9scU5XrQbPaoiS7Es5QF_AoaPbB5uKmlyWcRjbEupF6z1lXmMr4_Jl2mn3iQ45oh771I3bRyy506sA5XZRpVex4B9U0FsC46CrVuSPjyV3R
0 notes
onenettvchannel · 3 years
Photo
Tumblr media
#OnlyOnOneNETnews: The Upcoming 9th Season of RWBY downfalls thru a New Location as Announced between the RTX-VAF & SDCC 2021
IMPORTANT SPOILER WARNING: The following news article may contains an extremely sensitive spoilers. Readers frankly discretion is STRONGLY ADVISED! Also, Reporting our news article without the consent is punishable by law. We are honestly NOT responsible in our small news organization experience for any of it’s wrong doing. Read our disclaimer first, at the end of this article. Thank you.
AUSTIN, TEXAS -- A virtual online panel in both separate places between the Austin & San Diego. Rooster Teeth Expo-Virtual Animation Festival (RTX-VAF) and San Diego Comic Convention (SDCC) 2021 announces for the upcoming 9th Season of RWBY (much actually as Volumes).
For those you don’t know about the show of RWBY, a computer-animated web series was made by the Rooster Teeth Animation (RTA) and a show creator was late named by Monty Oum. He died from the Anaphylaxis of Comatose before Season 3 by the end of October 2015. The real acronym of RWBY stands for the names of Ruby Rose, Weiss Schnee, Blake Belladonna & Yang Xiao Long. It's a fictional sci-fi world of Remnant where the Huntsmen & Huntresses to be trained and become warriors to protect the world from monsters called Grimm.
In reality for it’s both places, minus the physical convention panel in America... Austin City at a Travis County in Texas goes for a 2nd Stage (known for as General Community Quarantine or GCQ). While in San Diego City at a same county name of California however (as according to our Research Team of OneNETnews and a local mainstream media like KDFW-TV's FOX 4: Dallas-Fort Worth for example), there is a possibility of Stage 4 (known also for the Enhanced Community Quarantine or ECQ). These stage numbers are subjected to be translated from the Austin Government to a Philippine Quarantine Classification status of Corona Virus Disease-19 (CoViD19).
RWBY was started in mid-July 2013 from a web streaming service of Rooster Teeth. Crunchyroll, VRV and Amazon Prime Video secures for a streaming rights in a legal way possible within the coming years as simulcasted for the entire animated show until today in the present.
Tumblr media
RTX-VAF was virtually held last July 8th-17th, 2021 and the SDCC follows individually a few weeks later by July 23rd-25th, 2021. The RWBY Panel commences at the RTX-VAF 2021 at 1pm EDT last Friday afternoon by July 9th & SDCC 2021 ends with a developing conclusion by July 25th, 2021 at 1am EDT. Casts and Crews from this show reveals for the announcements of Season 9 starts with the entire RWBY voice actresses team, along with a Lead Writer & Director named Kerry Shawcross and the 2 show writers were named by Eddy Rivas & Miles Luna.
Tumblr media
In a latest pre-recorded panel of RWBY at the RTX-VAF & SDCC 2021, the official work-in-progress (WiP) was released first globally from this said panel, and the same thing follows a few weeks later at the SDCC. OneNETnews had first obtained in an exclusive tidbits of Season 9 as Laura Yates (Supervising Producer of RWBY and RTA) showed a sneak peek with us to the public.
Tumblr media
Season 9 is now currently in production as Yates told exclusively to OneNETnews through our independent news media in Dumaguete as virtually from a group of video conferencing of RTX-VAF 2021, "We’re not quite ready to share Season 9’s release date yet, as the productions team being going well thou. We actually have a longer production run in Season 9 which is typically do, as upon allowing some of the animation departments when proceeding to move on to it’s next project such as fully animated, script writings, voice recording sessions, etc., which is very super exciting. We got a lot of big stuff coming up and a lot more updates to share soon". Several productions and preparations are meant to be fully completed for Season 9 by later this September 2021 onwards as Yates added.
-----
Tumblr media
As from a start of a sneak peek of Season 9, the entire Pocket Dimension known for as the Evacuation Central Location (ECL) is much more urgently ongoing. Ruby Rose is the ONLY perspective point-of-view, among the rest of her team of Yang, Penny, Weiss and Blake; while Cinder Fall continues for a serious opponent against the remaining team members of RWBY.
Tumblr media Tumblr media
Most of it's selected pathways are under attack, the muted suspect against the victim named Neopolitan Torchwick (probably not an actual last name in regular). She was the legal age above her 20s at this said moment.
Tumblr media Tumblr media Tumblr media Tumblr media
Yang immediately pushes to safety for Ruby but, Neopolitan was slained to her like a half-moon. Almost everyone else (except the evacuees themselves), the rest of the RWBY team were defeated for now (even with her weapon of Crescent Rose destroys or felled off alone).
Tumblr media Tumblr media
Cinder lets herself go with Neopolitan and/or Ruby during the 8th Season FINALE, both of them are in downfall the void at the end of the episode (as well sadly with Blake and others) upon passing out for a while.
Tumblr media
Ruby woked up temporarily with an a space travel from this said void. She checked out possibly for what is going on, as even with her left hand if it's related to fireflies or something else.
Tumblr media
Until one muted suspect sucker-punches her victim's face in the center as Neopolitan did for a domestic battery.
Tumblr media Tumblr media Tumblr media Tumblr media Tumblr media Tumblr media Tumblr media
Ruby tries to stop her muted suspect with a severe craziness of anger, Neopolitan shapeshifts herself within a few seconds in disguise. She was backed off with her both hands and punches again, leaving a muted suspect strangles for an attempted throat suffocation to her victim's point-of-view. Ruby grabs her disguised muted suspect's arm, she was quickly felled back for a gravity distance with it's separation.
Tumblr media
Neither both of them were landed from this scene through a mysterious island, as she plunged down the hydrosphere waters and washed ashore to sleep for this early morning (Solitas local time).
Tumblr media Tumblr media Tumblr media Tumblr media Tumblr media
Just a few hours later, Ruby woken up the 2nd time and notices a single voice to help with. Most of a gigantic size of sea shells and a medium-sized sea starfish are subjected to investigate and explore this mysterious island. It's a good sunny weather today to start off the entire journey of Season 9, immediately after it's said post-credits from a previous season. The main feature sits from this place of a gigantic tree above.
Tumblr media Tumblr media
The troubles of a fictional world like Solitas isn't over. Upon jumping it's entire conclusion, Ruby is about to be checked out on foot and went herself with a jungle trees first to see what it goes.
-----
At the end of a Sneak Peek clip, a similar conclusion with a different web series on YouTube called "Meta Runner" in Episode 1 as possibly connected to RWBY. A single commented basher says, it feels like an animated production company as seeking with Rooster Teeth will be cheated out from the another animation company in plagiarism at a later seasons but, the reference points of RTA looks okay with a permission as long as the homework-like copy is prohibited to do so.
youtube
As for Neopolitan Torchwick (the muted suspect herself), she will be automatically committed and charged with a Thrice Violation of Article 250 or the Revised Penal Code of it's Frustrated Homicide for the victim of Yang, Republic Act #9262: Section 3b or Anti-Violence Against Women and Their Children Act of 2004 & Republic Act #9745 or the Anti-Torture Act of 2009 as also for the individual victim of Ruby.
All of these 3 charges books into her jail sentence of 40 total years in prison for a heaviest result of Reclusion Perpetua, as included with a simple fine and punishment between almost U$D2,000 and a mandatory psychological private counseling (as to be scheduled by every other weekends at the Interrogation Room by August 7th, 2021 until further notice for an eligible later parole). She is now confiscating all of her deadly weapons, as soon as a different location arrives but not on this mysterious island this time (in our possible theory).
-----
The excitement at sunrise in Season 9 is almost here, even with a post-Pandemic of CoViD19 in America. We carefully mentioned to OneNETnews from these 2 separate conventions of RWBY panel for what does the Season 9 release date happens but, it isn't ready at the moment as according to Yates. Rooster Teeth Animation is working hard to produce at these tougher times until a final version were soon to be made available to the Rooster Teeth First members.
Season 9 of RWBY commences possibly later this year in 2021 onwards.
#TravelResponsibly
-----
EDITOR's NOTE: As expected from your immediate feedback last Thursday afternoon (July 29th, 2021), we updatedly corrected the final grammar issues from this said news report. We frankly apologize for that, mga Ka-Bandera.
SCREENGRAB COURTESY: RTX-Virtual Animation Festival & Rooster Teeth Animation
SOURCE: *https://www.austintexas.gov/page/covid-19-risk-based-guidelines [Referenced Stage Numbers in Quarantine Classifications from the Austin Government] *https://www.austinchronicle.com/daily/screens/2021-05-26/rtx-at-home-announces-animation-festival/ + https://www.awn.com/news/rtx-home-animation-festival-announces-line [Dual Reference Schedule of RWBY Panel] *https://archive.is/FS4vD [RTX at HOME - Reference Schedule] *https://roosterteeth.com/watch/rtx-2021-rwby-panel [RWBY V9 SNEAK PEEK - Skip to 31m35s for an Actual Clip] *https://www.youtube.com/watch?v=HR7bfwwd3l0 [Comic Con at Home 2021 - RWBY Panel] *https://rwby.fandom.com/wiki/The_Final_Word and *https://rwby.fandom.com/wiki/Unnamed_Shore
EXTREMELY HONEST DISCLAIMER: The views and opinions expressed from this Exclusive News Article are not necessarily those from the Rooster Teeth Animation. This medium-rare suspect like Neopolitan Torchwick does not be imitated in any matter. Furthermore, the assumptions of this Exclusive News Article will NOT state, intervene or reflect those of our Radyo Patrol reporters. The show, the station, the management, interwebs and the network. Thanks for reading! Stay safe and may the Celestia blesses you. Later!
-- OneNETnews Team
5 notes · View notes
scotianostra · 3 years
Photo
Tumblr media
On December 22nd 1715 James Francis Stewart,  landed in Peterhead from France.
If you read through this you might wonder, with this amount of support, how the '15 uprising failed. It's a pity the rest of Scotland didn't have the enthusiasm as this small corner of North East Scotland. 
Unfortunately it was all too late as the uprising had fizzled out after Mar’s inability to press forward after Sherrifmuir, so we shall take a look at where James Stuart came ashore, the loyal town of Peterhead. Much of this is taken directly from testimony taken around the time of the Uprising.
The people of Peterhead were in the main loyal to the Sturts, and were involved in the Jacobite uprisings from beginning to end. The town proudly remembers the numbers involved and the names of some…..
In total the number of Peterhead folk called to arms in defence of the town were 138 men and 10 women – yes Peterhead women prepared to take up arms to fight for the King – Janet Dickie, Margaret Greig, Geills Scott, Margaret Dun, Elspat Mitchell, Janet Cruickshank, Mrs Walker, Elisa Bruce and Widow Bodie and Widow Brown. They were ordered to arm themselves with “ane sufficient gun charged with powder and bullets, and four spare shots besides, and ane sufficient sword” and to meet at the Cross on the appointed day, where they marched and took part in military drills. 7 Spanish cannons, salvaged from the St Michael in 1588 were taken from their position on the Battery at Keith Inch, pulled across the sand bank at the Quinzie (Queenie), and mounted on the Tolbooth Green, looking down Broad Street for the defence of the interior of the town.
On 9th September 1715 the Earl of Mar, appointed Commander-in-Chief by the exiled ‘Pretender’ King James, issued a Proclamation at Braemar signalling the start of the 1715 uprising:
“Now is the time for all good men to show their zeal for His Majesty’s service, whose cause is so deeply concerned, and the relief of our native country from oppression, and a foreign yoke too heavy for us and our posterity to bear; and to endeavour the restoring, not only of our rightful and native king, but also our country to its ancient, free and independent constitution under him whose ancestors have reigned over us for so many generations.”
On 25th October the exiled King James wrote to his supporters in Scotland: “We have not been able to look upon the present condition of our kingdoms, or to consider their future prospect without all the horror and indignation which ought to fill the breast of every Scotsman. We have beheld a foreign family, aliens to our country, distant in blood, and strangers even to our language, ascend to the throne.
“We are come to take our part in all the dangers and difficulties to which any of our subjects from the greatest down to the meanest may be exposed on this important occasion, to relieve our subjects of Scotland from the hardships they groan under and to restore the kingdom to its ancient, free and independent state.
“But we hope for better things. We hope to see our just rights and those of the church and people of Scotland, once more settled in a free and independent Scots Parliament on their ancient foundation.”
On 31st October (Hallowe’en), the Magistrates and Town Council of Peterhead met at the Tolbooth (near the present Tolbooth Wynd), under the direction of the Secretary to the Earl of Erroll (from Slains Castle), George Leith, who was also Major General of Horses under the command of the Earl Marischal, with an order from the Earl of Mar, Chief Commander of King James’s forces in Scotland, which he read – ordering twelve of their number “to be ready mounted on horseback with sword and sufficient firelock, tomorrow precisely at six of the clock, to be witnesses to the said Mr Leith, his requiring the Lord Saltoun (of Fraserburgh) to give all due obedience to the foresaid orders.”
On 1st November (All Saints’ Day), 16 mounted “fenceable men” rode to Fraserburgh to proclaim the King. They were George Leith (Secretary to the Earl of Erroll), Bailie Cruickshank, Bailie Arbuthnot, Thomas Forbes, James Whyte, James Park, John Thomson, George Cruickshank, Alex. Smith (merchant), Robert Smith, John Logan, John Taylor, William Jollie, Alex. Forbes, James Blair & William Ramsay. The band of armed Jacobites rode off north towards Fraserburgh to “require” the Lord Saltoun to obey the orders from the Earl of Mar in support of King James.
About half a mile short of Fraserburgh the Peterhead band met Lord Saltoun and “obliged him to stop until the General’s orders were read to him. ”It was demanded of him “what Party he inclined to join with” and that he “appear at His Majesty’s Royal Standard”. Lord Saltoun answered that “he regarded neither Mr Leith nor his orders more than a footman” and further said that “at a whistle, he could raise a hundred men and cause them to fight all there present.”
Bailie Cruickshank answered that he believed they wouldn’t see them at Fraserburgh, where they immediately went and “proclaimed the King with all the solemnity we could, which we found did oblige the most of the inhabitants of that town.”
A party from the group went in search of arms, which they found in the chamber of the Clerk’s house. They broke open the door of the chamber with “ane big hammer” and found 24 new firelocks, proof marked, and all with A.R. (Anna Regina) on them, all charged with balls and gunpowder. The arms were taken back to Peterhead and handed to George Leith for the General’s use.
Later, a party of Jacobites, led by Irvine of Crimond, captured Lord Saltoun and forced him to go south to join the Jacobite army at Perth. Fraserburgh was then occupied by a Jacobite garrison, which compelled the inhabitants to contribute towards the payment of the soldiers.
On 13th November both the Earl Marischal and James Keith fought at the Battle of Sheriffmuir near Stirling. The Earl Marischal was 22 years old, and his brother 19 at the time of the Battle. James suffered a musket ball wound in his shoulder and spent the night in agony at Castle Drummond.
James Francis Edward Stuart (King James VIII) landed at Peterhead late on the night of 22nd December 1715, suffering from seasickness and fevers after having travelled 7 days (5 or 6 days according to other sources) by sea from Dunkirk in a well-armed vessel laden with a cargo of brandy. He arrived with six other gentlemen, including James Francis Fitzjames Stuart, grandson of King James VII, and Lieutenant Allan Cameron (a son of Lochiel), whom he sent immediately to Perth with the news of their arrival.
James Stuart was 27 years old, and this was the first time he had set foot in Britain since his father was driven into exile in 1688 (when James was six months old). He had lived at the Scots Court at Saint-Germain-en-Laye near Paris under the protection of the French King Louis XIV.
At first the small boat crept along the shore and attempted to enter the River Ugie, presumably to get as near as possible to Inverugie Castle, but “the night was wet and late the tide”, so they instead landed at the old pier of Port Henry Haven. The unexpected visitors were graciously received at the harbour by the Earl Marischal’s representative – the Baron Bailie Thomas Arbuthnot.
According to contemporary accounts they were “all habited like sea-officers, and passed for friends of the Pretender, going to Perth for his Service”. The vessel was despatched back to France with the news of James’s safe arrival.
They stayed the night at what is now Park Lane, near the Longate – at the house of the Baron Bailie’s brother-in-law, Captain James Park, merchant and ship owner. Here James wrote a short letter, dated “Peterhead, December 22nd, 1715” to say “I am, at last, thank God, in my own ancient kingdom as the bearer will tell you with all the particulars of my passage. I am weary and won’t delay a moment the bearer.”
A local song which commemorated the landing of the King at Peterhead was sung for many years after this event.
“King James is land’t at Peterhead, an honour great to us indeed.The night was wet and late the tide, he couldna unto Ugie ride.He slept a night in our good town, upon a good saft bed o’ down.In the morning when he raise, the Marischal’s bailie brushed his claithes. He’s come to set auld Scotland free from cursed Hanover tyranny.”
On the morning of 23rd December King James left by horseback, past Buchanhaven and then west by the old turnpike that skirted the south bank of the Ugie, to Inverugie Castle to visit the widowed Lady Mary Keith, mother of the Earl Marischal.
He passed the next night at Newburgh before carrying on to Aberdeen, accompanied only by a handful of horsemen, in ill health and in disguise. A contemporary account reports “’Tis said the Pretender is very much indisposed since his arrival, which is imputed to the great fatigue he has suffered at sea, and otherwise of late.”
The Earl Marischal and James Keith met King James for the first time at Fetteresso on 27th December, making their way to Dundee on 6th January, James Stuart entering the town with the Earl of Mar riding at his right hand and the Marischal at his left.
On 7th January 1716, they briefly set up court at Scone and arrived at Perth on 8th January.
On 30th January, the King, along with the two Keith brothers, the Earl of Mar and other main supporters, made for Montrose, where the King sailed back to France on 4th February 1716 on the ‘Maria Teresa of St Malo’. James Stuart had been only 43 days on Scottish soil. The Earl of Mar accompanied him back to France and served as his Secretary of State until 1722.
The first picture is a contemporary (if fanciful) illustration which appeared in a news sheet at the time. Clearly drawn by someone who had never visited Peterhead, it shows James Francis Stuart’s arrival the second at Proclamation Pend in the town of Peterhead celebrates arguably one of the most most historic event in the towns history
18 notes · View notes
jcmarchi · 26 days
Text
Unlocking new science with devices that control electric power
New Post has been published on https://thedigitalinsider.com/unlocking-new-science-with-devices-that-control-electric-power/
Unlocking new science with devices that control electric power
Tumblr media Tumblr media
Mo Mirvakili PhD ’17 was in the middle of an experiment as a postdoc at MIT when the Covid-19 pandemic hit. Grappling with restricted access to laboratory facilities, he decided to transform his bathroom into a makeshift lab. Arranging a piece of plywood over the bathtub to support power sources and measurement devices, he conducted a study that was later published in Science Robotics, one of the top journals in the field.
The adversity made for a good story, but the truth is that it didn’t take a global pandemic to force Mirvakili to build the equipment he needed to run his experiments. Even when working in some of the most well-funded labs in the world, he needed to piece together tools to bring his experiments to life.
“My journey reflects a broader truth: With determination and resourcefulness, many of us can achieve remarkable things,” he says. “There are so many people who don’t have access to labs yet have great ideas. We need to make it easier for them to bring their experiments to life.”
That’s the idea behind Seron Electronics, a company Mirvakili founded to democratize scientific experimentation. Seron develops scientific equipment that precisely sources and measures power, characterizes materials, and integrates data into a customizable software platform.
By making sophisticated experiments more accessible, Seron aims to spur a new wave of innovation across fields as diverse as microelectronics, clean energy, optics, and biomedicine.
“Our goal is to become one of the leaders in providing accurate and affordable solutions for researchers,” Mirvakili says. “This vision extends beyond academia to include companies, governments, nonprofits, and even high school students. With Seron’s devices, anyone can conduct high-quality experiments, regardless of their background or resources.”
Feeling the need for constant power
Mirvakili earned his bachelor’s and master’s degrees in electrical engineering, followed by a PhD in mechanical engineering under MIT Professor Ian Hunter, which involved developing a class of high-performance thermal artificial muscles, including nylon artificial muscles. During that time, Mirvakili needed to precisely control the amount of energy that flowed through his experimental setups, but he couldn’t find anything online that would solve his problem.
“I had access to all sorts of high-end equipment in our lab and the department,” Mirvakili recalls. “It’s all the latest, state-of-the-art stuff. But I had to bundle all these outside tools together for my work.”
After completing his PhD, Mirvakili joined Institute Professor Bob Langer’s lab as a postdoc, where he worked directly with Langer on a totally different problem in biomedical engineering. In Langer’s famously prolific lab, he saw researchers struggling to control temperatures at the microscale for a device that was encapsulating drugs.
Mirvakili realized the researchers were ultimately struggling with the same set of problems: the need to precisely control electric current, voltage, and power. Those are also problems Mirvakili has seen in his more recent research into energy storage and solar cells. After speaking with researchers at conferences from around the world to confirm the need was widespread, he started Seron Electronics.
Seron calls the first version of its products the SE Programmable Power Platforms. The platforms allow users to source and measure precisely defined quantities of electrical voltage, current, power, and charge through a desktop application with minimal signal interference, or noise.
The equipment can be used to study things like semiconductor devices, actuators, and energy storage devices, or to precisely charge batteries without damaging their performance.
The equipment can also be used to study material performance because it can measure how materials react to precise electrical stimulation at a high resolution, and for quality control because it can test chips and flag problems.
The use cases are varied, but Seron’s overarching goal is to enable more innovation faster.
“Because our system is so intuitive, you reduce the time to get results,” Mirvakili says. “You can set it up in less than five minutes. It’s plug-and-play. Researchers tell us it speeds things up a lot.”
New frontiers
In a recent paper Mirvakili coauthored with MIT research affiliate Ehsan Haghighat, Seron’s equipment provided constant power to a thermal artificial muscle that integrated machine learning to give it a sort of muscle memory. In another study Mirvakili was not involved in, a nonprofit research organization used Seron’s equipment to identify a new, sustainable sensor material they are in the process of commercializing.
Many uses of the machines have come as a surprise to Seron’s team, and they expect to see a new wave of applications when they release a cheaper, portable version of Seron’s machines this summer. That could include the development of new bedside monitors for patients that can detect diseases, or remote sensors for field work.
Mirvakili thinks part of the beauty of Seron’s devices is that people in the company don’t have to dream up the experiments themselves. Instead, they can focus on providing powerful scientific tools and let the research community decide on the best ways to use them.
“Because of the size and the cost of this new device, it will really open up the possibilities for researchers,” Mirvakili says. “Anyone who has a good idea should be able to turn that idea into reality with our equipment and solutions. In my mind, the applications are really unimaginable and endless.”
0 notes
jq37 · 4 years
Text
The Royal Report– A Crown of Candy Ep 6  Chaos in the Cathedral
Candians v. The World
As sure as the sun rises and sets every day, a D&D session that starts with the DM telling everyone he loves them is a D&D session that’s going to end in tragedy. 
We begin with the stakes as dire as they’ve ever been. The PCs are in the Cathedral with 7 Tartguard and none of their other allies. Amethar has just been excommunicated from the church for adultery, stripped of his title, and ordered seized as--technically speaking--Candia is now at war with the rest of the Concord. They are surrounded on all sides, outnumbered, and there’s no easy way out.
And Jet decides to charge the Pontifex.
She grabs her water dagger (8d6 to Candians, 4d6 to everyone else, plus the poison cocktail Amethar suffered and only 1 Use--clearing up Keradin’s statement about there being 3 daggers) and says, “I’d rather be a bastard than a fool who believes in a bulb.” If she wants war, the Rocks family will bring it. She provokes an opportunity attack from Bonathan (the french fries fighter) but Theo blocks it and joins in on the heresy with a, “Fuck the Bulb!” The Pontifex screams as she takes 28 damage--though she burns a legendary resistance (which she apparently has) to avoid the poison effects.
War dog Amethar immediately starts looking for exits. He hears the guards on the other side lock the big, main door and he sees that there are these big, glass windows, but they are reinforced with crossbars that need to be broken for anyone except maaaaaybe the kids to squeeze through. He yells for the Tartguard to hold off the Imperial soldiers before running up to Jet and begging for her to cooperate for once in her life. “Please, do not die for me.” He physically picks her up and--on a Nat 20--throws her right up to a ledge where one of the big windows are. Once she’s up there, she sees that there are priest-archers in hiding, waiting to snipe them.
(Emily/Jet: You don’t have to worry about me.)
(Ally/Liam: We’re fucked. We’re absolutely fucked.)
The archers go, getting a shot at all three kids, including Nat 20 on Jet for an arrow in the back.
Liam (after considering an entirely different course of action that gets ret-conned away) Hunters Mark’s Bonathan and crossbows him. As he does, a familiar figure rounds the corner--Keradin, unshackled and bearing his mace.
“Witch. Is that the spell you cast on me?”
He goes to town, dealing a full 31 points of damage, bringing Liam down to 6. Theo also takes a beating this round, getting 27 points of damage from Plumbeline.
Lapin at first tries to goad Basha into joining the fight against the church by prodding at his pride but only a Nat 20 would entice him to take that bait and Zac doesn’t hit it. He did however hit a Nat 20 last week to find out more info about the Bulb and Brennan gives him the first piece of info now: The magic of the Bulb isn’t different from the magic of the Sugarplum Fairy. Power is power. A warlock is a cleric is a warlock. It’s a difference of semantics. With the rest of his turn, he casts Fly on Theo so he can get the kids up to the window and he stands in front of Liam to protect him (tossing him 2d6 of healing).
“I misjudged you,” says Theo.
“Oh, shut up,” says Lapin.
Ruby, twinning as always, decides to also attack the Pontifex, doing 28 damage with her grasping arrow (which also forces the Pontifex to stay in place or take damage).
On his turn, Theo (who is under strict orders from Amethar to save his kids) gets both Liam and Ruby up to the window--and still has the time to flip off the whole church and say, “Long live the Sweetening Path.”
The Chaos Continues
The knights attack Amethar. Amethar attacks the Pontifex. Grissini, filled with grim determination, attacks the Tartguard (5 go down). Jet chucks a crossbow priest off the ledge. 
Amethar grapples the Pontifex and declares, “I have your leader. Will you not defend her?” But on a 9 Intimidation check, everyone can hear the panic in his voice. Fine. Reckless attack: 14 damage. Onionpatch, weedy though he is, is able to break the grapple on his turn.
Liam tries to break the bars on the window--which Brennan has stressed several times is a very high DC to hit (Liam would need a Nat 20) and needs to take at least 20 damage at a time for it to stick at all--but doesn’t do it.
Keradin rains down blows on Lapin, the pretender, and Lapin goes down (the Fly spell on Theo going down at the same time). As he goes down, he has the second revelation about the Bulb gleaned from his Nat 20 from last session: the Bulb exists and it is powerful but it is mindless. It’s a pure source of power with no agenda or wants or desires. They’re worshiping a battery or a nuclear reactor. He rolls a death save. Failure.
Ruby gets out her rope, gives one end to Theo, then uses Mage Hand (which is invisible but, in reflection, can be seen as her Aunt Lazuli’s hand) to send the other half down to Amethar before casting Fog Cloud to make him harder to hit. 
Theo tries to drag Amethar up with the rope, but Amethar hasn’t had the chance to grab it yet so it just slips his grasp. He tries to break the bars on the window but fails. He wants to Compel Duel with Keradin to take the heat off Lapin, but he’s out of range.
The Pontifex heals herself, undoing many turns of effort. Amethar takes 9 points of damage from various knights. The remaining Tartguard go down. A Ceresian soldier tries to hit the prone Lapin but rolls a 1 and a 2, missing him entirely (somehow). 
Jet--who, as you might have guessed, has been very “Not Without my Father” all battle despite Amethar’s orders--attacks one of the priests and then uses her Maneuvering Attack ability to let Amethar move half his movement without provoking Opportunity Attacks--an ability that works despite the lack of line of sight caused by Ruby’s protective Fog Cloud. 
Amethar climbs the rope and gets to work on the window--hitting both times but only doing damage on the second. He does 22 points of damage but the bars have 30 HP so it’s gonna take another hit. The priest fighting Jet tries to disengage but her Sentinel ability activates and she slices him through, dead.
Liam sends Preston down to help Lapin with his death saves and then unsuccessfully tries to break the bars. Keradin immediately starts wailing on Preston and does 28 points of damage, dropping him.
Lapin has his second death save. Failure. 
Ruby tries to attack the bars but fails. She tries unshackle Manta Ray Jack (who was chained and tortured to get Amethar’s secret last episode) and fails even harder on double Nat 1s.
Brennan throws the gang a bone and says that the bars will now break on a 19 or 20 since Amethar weakened them and, what do you know, on his very next attempt, Theo rolls a 19. BAM, he rushes the window and immediately falls out. Jet grabs Liam and jumps out, taking most of the falling damage herself. Amethar throws Ruby out the window, looks back at Lapin’s body, then jumps out himself. Theo catches him, negating the damage that would have dropped him.
Lapin’s Big Day (Part 3)
Lapin is left alone in the church, Preston’s body still beside him, the Pontifex and Keradin above him, consciousness slipping away. He has one last death save and, on a 20, he’ll pop back up to 1 HP and get a turn. It’s absolutely his only chance. He rolls.
13, for the rabbit whose luck has run out. 
He does an Insight check on the Pontifex and, on a 14, he gets the sense that she doesn’t know the true nature of the Bulb and she doesn’t care. She just cares about power.
“Heretic, apostate, warlock of the Sugarplum Fairy. You mock all that which is bright and shining. Do you have any last words?”   
And, legend to the end, Lapin says, “The Bulb cares for no one.”
The Pontifex tells Keradin to end it but, before he does, Lapin hears a voice in his ear.
“They wouldn’t have survived this without you. My final wish is for you to come home.”
And Keradin dashes Lapin across the stone of the cathedral.
In Memoriam
I knew last week that I would be writing a eulogy for a piece of candy today, but I had my money on the wrong piece of candy (or pieces of candy rather). 
Lapin had the most to lose in this fight, and the easiest out. He was still, at least on paper, aligned with the church. He could have just hung back and let the others escape while he did nothing or sent an Eldritch Blast flying that purposefully missed its mark. There was a path out of this for Lapin in simply doing less. 
But he didn’t. He had exactly one proper turn all fight and he used that turn to turn the tide of the entire encounter. If he doesn’t step up to protect Liam, Liam absolutely drops. If he doesn’t cast Fly on Theo, Ruby and Jet are screwed. If Ruby and Jet can’t get that Fog Cloud/Maneuvering Attack double team, Amethar is screwed. He saved everyone. He’s *always* saved everyone. That is the entire story of Lapin in this game. The grumpy but loyal bastard whose last words to the party are, “Oh shut up,” when he’s told he’s been misjudged.
Lapin’s game was cut tragically short but, man, did he cram so many epic moments into the time he was given. From single-handedly keeping Ruby and Amethar up during the Ambush to his skillful manipulation of damn near everyone he came into contact with at the Tournament and then his heroic sacrifice in this ep, and getting to meet death with defiance for his enemy and praise from his patron. 
Many mid-campaign deaths are unceremonial and just kinda random, like in real life, but Lapin’s death really did have a poetry and a sense of closure to it. He was told he needed to protect the Rocks family. He was told boldness would be required. He said if anyone found out about him he would die. Check, check, and check. And death even came for him on the third fight--I absolutely live and die by the rule of three and, apparently, so does Lapin.  
To die in the stronghold of the church he infiltrated, secret out, more knowledge about the inner machinations of the religion than possibly even the Pontifex herself, secure in the thought that with his death, he bought his charges enough time to make a run for it is, I think, a lot more closure than a lot of characters get. That’s a full arc. 
Plus, he got one more sick one-liner for the road. 
And, let’s not forget, our baby boy Peppermint Preston who fell taking blows meant for Lapin, sent down by Liam who earlier that week was convinced that Lapin hated him. It seems like a waste, but that’s only because it’s how the dice shook out. How badass would it have been if he’d drawn the attacks and Keradin had whiffed them or if Preston had dropped, but Lapin had rolled a Nat 20, popped back up, scooped him, and left--healing him on the way out? It could have been great. 
But it wasn’t. It was just brutal. 
So, RIP to our boys. May they be doing shots with the Sugarplum Fairy in Candy Heaven.
Things I’m Concerned About
The Candians were pretty screwed no matter what they did in this episode, but man they truly decided to burn all their bridges with all the F the church talk, blatant magic, and attacking the Pontifex. They are fully terrorists at this point. 
None of their people (besides the Tartguard) were in the church when this happened. What happens to them? Do they have time to alert them? Are they all just dead?  
I wish Jet hadn’t used that knife on the Pontifex. Like, it’s the least of their worries but not only was it a waste, it makes it seem like the attack on Amethar was a false flag which would also make the attack on the road seem like even MORE of a false flag. That was tactically Not Good. 
Because of the way the information was tortured out of Manta Ray Jack (sidenote--are they, like, gonna kill him?), it seems like the Candians might still have allies in the Dairy Islands (as in, they know the Candians were railroaded and didn’t attack first) but this is such a crappy position to put someone in and the Dairy Islands are already weak. Plus, there’s at least one known bad actor there. Who knows who can be trusted at this point?
Where do they even go from here? The rest of the map is at war with them. If they can make it home, war will follow them there too. What is the victory condition here? Dismantling the entire church? If so, yikes.
And, speaking of, the church was really wilding out just having Keradin come out to fight the PCs. Does this mean he’s off the hook? Alfredi too? It seems like they very well might be now that their actions can be retroactively “justified”. Still curious about whether they were working under the church’s direct orders or doing their own shady thing that happened to align with the church’s goals. 
THEY HAVE NO HEALER. Like, unless Zac’s next character is also a healer, the party is now in the most precarious position they’ve ever been in with no healer. Hands down, the worst person who could have gone down, party comp-speaking.
Five More Things
There’s a rule in law school called the laugh test and it says that, before you make an argument, say it out loud and see if you can get through it without laughing. And there’s a part in this episode where Siobhan is proposing some BS but I don’t even know what it was because she just fully breaks herself and can’t get through it, and that’s the best illustration of that rule I’ve ever seen in practice. And, while we’re here, the other two A+ Siobhan moments this episode were her face at her double Nat 1s, and, to Lou for reminding Brennan that attacks on him get advantage, “You’re a good man. I’m gonna miss you so much.”
Man, how painful is it that Lapin got to see into the Matrix and figure out the Bulb and then he had the knowledge immediately die with him? Absolutely brutal.
The tension at the table this episode. The ominous music that felt bad until it would cut out completely, which was infinitely worse. The burying of heads into hands and leaning on each other for support. This episode was a LOT. I can’t IMAGINE having been at that table. And I had a week to make my peace with the idea that someone was most likely gonna die. To have to deal with this right on the heels of last ep? Geez.
Hearing on Adventuring Party how Zac planned to have Lapin give a bad guy speech and Thunderstep out with Liam if Initiative had shook out differently really makes it hit home how D&D is really about those in the moment things you can’t control. This could have been a very different encounter but was Jet supposed to NOT try and stab the Pontifex? Of course not, she HAD to. She’s JET. And she got to set the tone of the fight because she rolled highest. 
Can you imagine if Amethar had jumped out the window, taken that damage, and just dropped? And failed his death saves? And they had no healer? 
Just as a final note, I have to give major props to the whole cast for this episode. We’ve known that this was the “actions have consequences” season since it was announced, but this is really the first time we’ve really gotten to see the extent of the consequences and everyone handled it very well--the PCs staying true to character, even it wasn’t optimal, but still playing smart, and Brennan for facilitating such emotionally difficult scenes. This is peak D&D y’all.
98 notes · View notes
voidendron · 4 years
Text
Deep Blue Sea, Ch. 19
<<<Chapter 18 | Chapter 20>>> [wip]
Chapter 19: The Aurora Subnautica/JSE Egos Crossover
hiiii it’s been a while oops- I have a new hyperfixation, so working on Ego stuff has actually gotten pretty difficult, but I’ll do my best to update this whenever I’m motivated to do so!
Warnings: Swearing, Arguing, Knives Characters: Chase Brody, Marvin the Magnificent, Second Officer Keen, Jackieboy Man (briefly), Dr. Schneeplestein (briefly) POV: Chase Brody
“Warning: Local radiation readings suggest the Aurora’s drive core has reached critical state. Quantum detonation will occur within two hours.”
“…Hey, Chase. Remember what you said yesterday? That thing you were so confident about? What was it you said again?” Marvin asked as he glared down at his PDA. His diving mask was pushed up on his forehead while he treaded water with his free arm.
The repairman’s groan was muffled by his mouthpiece as he ducked his head under the surface to avoid his companion’s glare. That had to be literally one of the worst things to be wrong about.
A hand on his suit dragged him back above the surface, then moved to pull his mask off. “C’mon. What did you say?”
“…That the Aurora won’t blow up.”
“That the Aurora won’t blow up, right! And what’s about to happen?”
“…The Aurora’s gonna blow up?”
“The Aurora’s gonna blow up!” Marvin grumbled something under his breath, then with the flat of his palm smacked the water with a curse. “Just great! Wonderful! Let’s get back to the goddamn habitat.”
Both men pulled their masks back down over their faces and began the swim back with the materials they’d gathered to add to the growing collection. Chase could feel the dread in the pit of his stomach the whole way there, the worry, the “what ifs” lingering in the back of his mind. He was a repairman, not an engineer. Hopefully the damage wouldn’t be as severe as the warning made it sound…
When they entered the habitat, the drainage system seemed to take ages before they were finally able to push the bulkhead open. Both Seaglides were tucked out of the way along with the supplies, then Chase cast his eyes around the too-cramped room.
Jameson, already on his feet and moving to start putting the new materials away in their respective lockers. Henrik, tending to Jackie’s injury again while cussing him out over something. Keen, rubbing at his chin while he scowled down at his PDA’s cracked screen. It wasn’t long before his eyes shifted from the device, up toward Chase and Marvin. He pursed his lips, then, “Quantum detonation. We don’t know the shape that will leave the ship in.”
“And?” Marvin asked.
“And, for all we know, it could take out the computers that the data package was sent to.”
“Well…actually,” Chase interrupted, “detonation’s gonna be in the drive core, right? The drive core and some of the major computer systems are pretty damn far from each other. Multiple walls between ‘em—hell, they’re even on different levels, and the computers get their power from multiple places throughout the ship just in case one or more of its sources goes down. Long as the entire ship doesn’t decide, ‘Hey! Fuck this shit!’ then the package should be okay, even if I can’t repair the drive core.”
“Okay… How’re you so sure while Keen’s worried, thought?”
“Hey, no offense to Keen, but I’m the repairman. I’ve been on every level and in every room of that damn ship to fix shit no one else could be bothered with. He was one of the highest ranking officers there. Doubt you even set foot in the engine room or JJ’s cafe, like, ever, did ya?”
“…He’s right.” Keen nodded, tucking his PDA away. “Brody likely knows the layout of the ship better than anyone, save the engineers who built it. It you believe the main computers will be safe, I’ll take your word for it, then.”
One hour ticked by. He, Marvin, and Keen were now sticking close to the habitat as they gathered materials. Going inside during detonation would probably be the safest bet, right?
Fifteen more minutes. Marvin had already gone in to start getting more power cells and batteries crafted, leaving the officer and Chase to continue scavenging just a little while longer.
At half hour to detonation, they both made their way back into the habitat to join the others. Time seemed to stretch for ages as they sat around in tense silence—Jameson was chewing his nails, Marvin played with his hair, Chase couldn’t help the anxious tapping of his foot.
All six PDAs gave a warning beep that had Chase jumping even as he’d been expecting it. They echoed one another in an eerie monotone, each survivor moving away from the window as the words droned from their devices.
“Emergency: A quantum detonation has occurred in the Aurora’s drive core. The reactor will reach a super critical state in T-minus ten, nine, eight, seven, six, five—” Chase closed his eyes and scrunched his fists into the fabric of his dive suit, “—four, th-three-ee-ee, t-t-two-two…”
Even underwater, even inside the habitat, he could feel the shock wave from the explosion rip through the water around them: The way it threw sand up at the window, the habitat creaking, lights flickering, projectile shrapnel from the ship itself clanging as it hit the shallowly submerged habitat hard enough that in one spot off in the corner if even started a leak.
Then, it was over.
Just like that, everything went quiet as the survivors took a collective breath. So quiet, Chase grimaced when their PDAs chirped again with, “For your convenience, the radiation suit has been added to your blueprint database.”
Chase actually found it in himself to snort. “…At least one good thing comes outta that.”
“I’m almost scared to see the ship, now.” Jackie’s voice, through gritted teeth, as he winced with every step toward the window. Not like looking out of it would do any good. Not with the sand disturbed. It would be a while before the water was clear again in their shallows. “I mean, that had to be some explosion, right?”
“Doesn’t matter. I’ve gotta go and at least try to repair the drive core.”
“Well, I’m goin’ with you.”
“To hell you are!” Henrik scoffed. “You can barely stand and the water is no good for your injuries, Mann!”
Marvin shook his head even as he gathered up supplies from the lockers for the new blueprint. “Like hell am I going anywhere near the ship. I’m not dealin’ with a Reaper again.”
“I’m not goin’ alone! Someone’s gotta watch my—”
“I’ll go.” Keen was already at the fabricator that Marvin had put the supplies on, letting it read his PDA so it could get the sizing for the new suit correct. When Chase opened his mouth to protest, the older man simply put a hand up to stop him there. “I slept through the night and most of the morning—I’m rested and my injuries were minor. I’ll accompany you to the ship.”
The suits were heavier than their previous ones, but not n a way that hindered them as much as Chase had expected. The only downside was that the flippers were smaller—stiffer—but he supposed that would be good for when they got onto the actual ship and couldn’t take the flippers off unless they wanted radiation poisoning. Regular ones would have had them falling on their faces on dry land. The helmets also had a wider field of vision from the masks or rebreathers, and no mouthpiece so they could speak while keeping them on—another plus.
“One of you should take the Seamoth, and the other use a ‘Glide,” Marvin said as he handed both of them fully-charged Seaglides. “The ‘Moth’s a bigger target, but also a lot faster. If the Reaper goes after one of you, it’ll chase whoever’s in that, and it’ll have a better chance at escaping. Then the one with the ‘Glide can get past safely.”
“With any luck, we won’t run into one of these ‘Reapers’ at all.”
“Heh. Be nice if somethin’ goes our way for once, huh?”
A final nod to their companions, one last supply check (survival knives, extra batteries, laser cutter, scanners, first aid kit, repair tool—all accounted for), and they pulled the bulkhead open, waited for the teeny little corridor between it and the hatch to flood, then left the habitat.
Keen was the one to take the Seamoth, leaving Chase to trail behind. Smoke still rose from the ship as they approached, there were pieces of the hull that looked like they were barely held on by a few bolts, and the water was so murky from the disturbed sand that he couldn’t see his own hand in front of his face and could barely tell which way was up when completely submerged.
It made the knowledge that there was a massive creature, somewhere out there, all the more terrifying. It could be swimming inches away from them and they’d never even know it.
The first time Chase heard the Reaper’s cry, he could have sworn his blood turned to ice right then and there. His breath caught in his throat, even as he realized the sounds were from far off. So far, it seemed the last few hundred yards to the ship would go without incident.
That didn’t change the fact that it was the most terrifying sound he’d ever heard and didn’t dare duck his head under the surface.
Ahead of him, the Seamoth sped up slightly before falling back again (hesitantly) so he could actually keep up. Keen had heard it, too.
They hugged the side of the ship when they finally reached it, searching for any points of entry that may have been torn into it. It didn’t take long to find one: The entire front half of the Aurora had been ripped apart by the explosion, and Chase’s stomach twisted. He really hoped they wouldn’t find any bodies once they got on board.
“Warning: Ship’s structural integrity is low. Fire suppression equipment and laser cutters may be required. Exploration is conducted at your own risk.”
“Thanks, PDA…” Great. They’d forgotten fire extinguishers. At least they’d been plentiful on the ship—they had a good chance of stumbling across one in their time aboard.
Keen parked the Seamoth as shallowly as he dared on a sloped piece of metal that would have to act as their ramp into the ship. They both hauled their Seaglides up under one arm, survival knives in the other. There were Cave Crawlers everywhere… A part of Chase told him that human bodies would probably be nonexistent with those things on board, and it took everything he had not to gag at the thought.
“Don’t let them rip your suit,” the officer demanded as he used his Seaglide as a bludgeon on one that lunged at him. It fell stunned at his feet, only for him to kick it off into the water. Chase would have snorted if not for the unease that settled over him as he got a good look at the smoldering remains of the ship, at twisted metal, at collapsed floors that used to be rooms and command center.
The repairman swallowed, holding his knife close as they continued up the “ramp” that he was starting to recognize as the floor that should have led straight to command.
“What do you think we’ll find on board?”
“…I don’t know. Let’s just worry about the drive core first.”
“Right. Yeah, okay.”
It was easy to find, once they got past all the crabs and into the ship, once they helped each other clamor over too-heavy crates that had fallen in the way of one of the corridors. H eknew the ship’s layout from bow to stern, after all. Now…
Now Chase could only frown as he looked down into the water that had flooded the drive core room. There were…things in there. Swimming about, attacking one another…
He pulled his scanner from his hip when one came close enough to the platform—the scanner dubbed them “Bleeders”—and then glared at all the damage he could see from where he stood. They kind of reminded him of cuttlefish. It wasn’t as bad as he thought it would be—he even figured it should be fairly easy to repair from what he was seeing—but if those Bleeders tore his suit..?
When he turned to Keen, the older man had his hands on the railing, eyes fixed on one of the creatures as it circled near them, clearly trying to figure out how to get at them. “They’re like leaches,” he said without looking to Chase. “Had one attack me when I left my lifepod. Don’t let them latch on.”
“Think you can keep ‘em away from me while I repair?”
“I believe so.”
They set their Seaglides near the door to keep them out of the way of feet and tools and knives and Chase got to work on the damage he could reach from the platforms, first.
Without looking away from his work, Chase asked, “So… What’re we gonna do about that Sepse guy? Just…leave ‘im here when we leave?”
“I hate to say it, but yes. He’s been here alone for too long and attempting to get him on a ship off world would just put anyone involved in danger.”
“Fair enough.” One spot finished, he moved on to the next. He’d have to go in the water soon. “Got another question for ya: The rest of Sepse’s crew. The Mongolians? Any idea how they ended up here? Marv thinks they were looking for habitable planets.”
“Why they were here, no.” Chase could tell by the sound of his voice that Keen had his back turned to him to watch the Bleeders beneath their platform. “It… But it’s why we’re here.”
When he spun around to face the officer, he about caught his own finger with the repair tool. “…What do you mean by that?”
Careful with the knives, Keen crossed his arms with a sigh and shook his head. “The Degasi went missing a decade ago. To improve relations with the Mongolian settlement, Alterra gave the Aurora a secondary mission: To find out what happened to its crew. This system was its last known location, and we came close to the planet in an attempt to scan. That’s the only reason we were equipped with diving gear and appropriate vehicles.”
“So this…this…” Chase went to pinch his nose but only bumped the glass on his helmet. So instead, he threw his hands up, nearly catching Keen with his still-active tool. “Why didn’t the rest of us know about this?! Some…secret fucking mission could be what kills us all!”
“It was meant to be a simple scan. But something happened, Brody. And I have a feeling what happened to us is what also brought down the Degasi.”
“Doesn’t fucking change the fact the rest of the crew should’ve known. That Mongolian emissary—Khasar?—that’s why he was on board, wasn’t it? So you could figure out what the hell happened and he could tell his people. Why the fuck would that be kept from the rest of us, man?”
“Because nothing was expected to come of it! If something was discovered we would have sent people down while the Aurora continued on its course to set up the phasegate. This—” he gestured at the flooded room around them, “—was never supposed to happen.”
“Awesome. Good to know we’re stranded ‘cause someone was curious about a crew that went missing ten fuckin’ years ago.” He shouldered past Keen to move on to the next spot that needed repairing.
Curiosity killed the cat, Chase thought bitterly. He reached a hand up for the pendent at his throat, could feel it under the thick fabric of his suit. Someone else’s curiosity could be what never let him see his kids again, dammit.
“…Did Doc know? He keep this shit from us?”
“No. Schneeplestein was too new to the crew. He was one of the few ranking officers who wasn’t informed.”
Chase shook his head and muttered under his breath, checked the battery on his repair tool—
“Brody—”
“Can it.”
—and stepped off the platform into the water below. The nearby Bleeders immediately went after him but the super-heated end of the repair tool worked even better on them than he’d expected. It wasn’t long before Keen was there with the knives so Chase could use the tool as it was actually meant to be used, however. Just focus on the job at hand for now, he told himself. Repair the drive core so you don’t have to worry about the radiation.
It took a lot of time—a few hours, by Chase’s estimation—before he was finally positive every leak in the core was repaired. Or…“repaired” since it wasn’t like it would ever run again anyway. At least now the leak was stopped.
When they surfaced again, Chase was the one to take the leader after they’d snatched up their Seaglides.
“When we get back, you better fuckin’ tell the others about the secret little mission that killed over a hundred people. Got it?”
He didn’t give Keen a chance to answer, instead storming off for another part of the ship.
To the computers then, he thought. Let’s see what that package is.
6 notes · View notes