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#Micro-Segmentation
anomalous-heretic · 10 months
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Engineering Network Services
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cohoai · 28 days
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Micro-Moments Unfolded: How Brands Ride the Spontaneity Wave - Coho AI
Micro-moments emerge when consumers reflexively turn to a device, predominantly a smartphone, as a response to an instantaneous need or curiosity. They aren’t just confined to purchasing decisions. They encapsulate a spectrum of actions: “I want to know,” where a user might be looking up a fact or information; “I want to buy,” which can lead them down a purchasing rabbit hole; “I want to go,” guiding them to seek out locations or experiences; or even “I want to do,” pushing them to explore a new activity or hobby. These moments are fleeting but potent, representing pivotal junctures in the decision-making process. https://www.coho.ai/blog/micro-moments/
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zwei-rhunen · 6 months
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hi yes is it just my eyes glazing over as i "read" through this? no? just me? okay.
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.... /nods
lmao don't smile at us like that
edit THANK YOU CID
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lmfaoooo this poor girl
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nope.
tldr:
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freemicrotools · 10 months
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Class C IP Checker - Analyze Your IP Network Segmentation
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alexhales1332 · 10 months
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Engineering network services is a management consulting firm that specializes in helping organizations improve their performance and achieve their strategic goals. Our company offers a range of services, including strategy development, organizational design, change management, and leadership development.
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tbrcresearchreport · 1 year
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The Business Research Company offers automotive micro motor market research report 2023 with industry size, share, segments and market growth
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electronalytics · 1 year
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Micro-Electro Mechanical Market, Key Vendors, Segment, Growth Opportunities by 2017 to 2032
Micro-Electro-Mechanical Systems (MEMS) is a technology that combines microelectronics, microfabrication, and micromachining to create tiny devices that can sense, control, and actuate on a microscopic scale. MEMS devices are typically manufactured using semiconductor fabrication techniques, similar to those used to make integrated circuits (ICs), but with additional steps for creating microscale mechanical structures.
MEMS devices can be found in a wide range of applications, from consumer electronics and automotive sensors to biomedical implants and industrial control systems. They are particularly useful in applications that require sensing or actuation on a small scale, where traditional mechanical or electronic components may be too large or too complex.
MEMS technology is continuing to evolve, with ongoing research into new materials, manufacturing techniques, and applications. As the demand for smaller and more precise sensing and actuation devices grows, it is likely that MEMS technology will continue to play an increasingly important role in a wide range of industries.
The "Micro-Electro-Mechanical Systems (MEMS) Market") is divided into regions, countries, companies, and other segments in the most recent market research report. The top players who lead the global Micro-Electro-Mechanical Systems (MEMS) market have used a variety of tactics to expand their market share and fortify their dominance in the sector. By using the study as a valuable resource for their business needs, stake holders and other participants in the global Micro-Electro-Mechanical Systems (MEMS) market will be able to acquire the upper hand.
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Market Segmentations:
Global Micro-Electro Mechanical Systems (MEMS) Market: By Company • STMicroelectronics • Robert Bosch • Texas Instruments • HP • Knowles • Panasonic • DENSO • Canon • Avago Technologies • Freescale Semiconductor • Analog Devices • AKM • Seiko Epson • Infineon Technologies • InvenSense • Murata • Sensata • Honeywell • GE • Qorvo • Lexmark • UTC Aerospace Systems • Sony • FLIR Systems • TE Connectivity • ROHM Semiconductor • AAC Technologies • Omron • Sofradir • MEMSIC Global Micro-Electro Mechanical Systems (MEMS) Market: By Type • Fixed • Movable Global Micro-Electro Mechanical Systems (MEMS) Market: By Application • Industrial • Consumer Electronics • Medical & Healthcare • Automotive • Others Global Micro-Electro Mechanical Systems (MEMS) Market: Regional Analysis All the regional segmentation has been studied based on recent and future trends, and the market is forecasted throughout the prediction period. The countries covered in the regional analysis of the Global Micro-Electro Mechanical Systems (MEMS) market report are U.S., Canada, and Mexico in North America, Germany, France, U.K., Russia, Italy, Spain, Turkey, Netherlands, Switzerland, Belgium, and Rest of Europe in Europe, Singapore, Malaysia, Australia, Thailand, Indonesia, Philippines, China, Japan, India, South Korea, Rest of Asia-Pacific (APAC) in the Asia-Pacific (APAC), Saudi Arabia, U.A.E, South Africa, Egypt, Israel, Rest of Middle East and Africa (MEA) as a part of Middle East and Africa (MEA), and Argentina, Brazil, and Rest of South America as part of South America.
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technotale · 1 year
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Micro-channel Plate (MCP) :Increasing research and development activities in the field of physics is a major factor driving growth 
The micro-channel plate (MCP) market is a subset of the electronics industry concerned with the manufacture and selling of MCP devices. MCPs are used in a variety of electronic systems and devices, such as spectrometers, photomultiplier tubes, imaging systems, and others.
MCP demand has increased in recent years because to its increasing application in many end-user industries including as defence, aerospace, medical, and scientific research. The advancement of innovative MCP-based technologies, as well as the rising need for high-resolution imaging systems and sensitive detecting systems, are all contributing to the MCP market's expansion.
The global MCP market is predicted to grow rapidly in the coming years, owing to rising demand for advanced electronic systems and devices, as well as rising demand for MCPs in a variety of end-user sectors. The market is also likely to gain from key companies' growing spending in R&D activities to improve the performance and capabilities of MCPs.
The existence of various large and small firms in the MCP market is characterised by the presence of several prominent players, including Hamamatsu Photonics, Photek, MCP-Technologies, and L3Harris Technologies. The market is also extremely competitive, with firms focused on strengthening their product offerings and growing their market presence through strategic alliances and acquisitions.
Overall, the MCP market is likely to create considerable growth potential for industry players in the approaching years.Read more @ https://techinforite.blogspot.com/2023/02/flight-tracking-system-market-size.html
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rameshjadhav · 1 year
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GLOBAL MICRO DATA CENTER MARKET - GROWTH, TRENDS, COVID-19 IMPACT, AND FORECASTS (2022 - 2028)
Global Micro Data Center Market Size Was Valued At USD 4.65 Billion In 2021 And Is Projected To Reach USD 13.30 Billion By 2028, Growing At A CAGR Of 16.2 % From 2022 To 2028.
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Global Micro Data Center market included in this report are analysis of the impact of COVID-19 outbreak on the points influencing the market growth. Additionally, the Micro Data Center market by major key players, by type, by application and by major region, breaks down the outlook, business assessment, competitive scenario, trends and forecasts by upcoming years. The study of the Report is conducted on the basis of an important research methodology which provides an analytical examination of the global market on the basis of the various segments which have been marginalized by the industry as a summary and pre-scale of the market due to their different prospects
The increase in demand for robust data centers is expected to influence the growth of the micro data center market during the forecast period of 2022 to 2028. Also the increase in demand for plug-and-play data centers and the Increase in the number of branches Office automation is also anticipated to flourish the growth of the micro data center market. Furthermore, the high demand for micro edge data centers in various industry verticals and the deployment and commercialization of 5G network connectivity are likely to have a positive impact on the growth of the market.
Read More: https://introspectivemarketresearch.com/reports/micro-data-center-market/
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analyticsmarket · 2 years
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divyakumbhar · 2 years
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Micro Hospitals Market
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Market Analysis and Insights : Global Micro Hospitals Market
A micro-hospital is a small sized in-patient facility that operates 24/7, catering perfectly for observation, emergency care and short stay medical needs. Micro-hospitals, typically having about 10 to 15 beds, offer comprehensive emergency services in remote and under-served locations. Micro-hospitals represent another evolutionary step in consumer-direct healthcare delivery in the United States. With an estimated 60 micro-hospitals in the U.S., this is a relatively new type of asset that is distinct from both the small Critical Access Hospital (CAH) and Free-Standing Emergency Departments (FSED). Micro-hospitals are small scale In-patient facility that offers a variety of emergency medical services. They mostly focused on treating low-acuity patients and provides ambulatory and emergency services. Micro-hospitals can bridge the gap in care delivery and quality of healthcare in underdeveloped areas. Due to its economic nature, intimate delivery model, micro-hospitals are ideal in rural areas. Micro-hospitals differ from traditional hospitals in the range of operations done. It is also gaining importance to improve healthcare system by reducing cost and patient compliance.
“According to this latest study, the growth in the  Micro Hospitals market will change significantly from the previous year. Over the next six years,  Micro Hospitals will register a CAGR in terms of revenue, and the global market size will reach USD in millions by 2028.”
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marketresearch23 · 2 years
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bethanythebogwitch · 1 month
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Wet Beast Wednesday: tardigrades
Last week on Wet Beast Wednesday I covered the largest animals to ever exist on our planet. This week I'm going to pull a full 180 and cover the smallest animals yet on this series. Meet the tardigrade, the internet's favorite micro-animal the is said to be basically immortal. How true is that? Let's see.
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(Image: an electron microscope image of a tardigrade. It looks a lot like a potato with eight stubby legs tipped with long claws. At the front is a small, circular mouth. It has no other discernable features. In the background are bits of plant matter that look like seaweed at this scale. End ID)
The tardigrades are 1,300 known species (and probably a lot of unknown ones too) in the phylum Tardigrada. They are also part of the superphylum Ecdysozoa, which are animals that grow by molting their outer cuticles or exoskeletons. In particular, the tardigrades are believed to be a sister group of the arthropods, the group that contains crustaceans, insects, isopods, and a lot of other things. Tardigrades are truly tiny, the largest species reaching a whopping 1.5 millimeters in length, though most species reach no more than 0.5 mm. They have round, segmented bodies with four pairs of legs that end in either claws or suction discs. The body segments consist of a head, three body segments with a pair of legs each, and a caudal segment with the final pair of legs. The first three legs are used for movement while the final pair points backwards and is used for grabbing onto substrate. All of the body segments except for the final one correspond to segments found in the head section of insects. Tardigrades are missing many hox genes, genes that direct the body plan during development. Their ancestors may have had a body plan more similar to insects, but the loss of the hox genes has compressed them into walking heads with a bit of butt. The mouth is tubular and sucks in food. In the mouth are stylets, needle-like structures used to pierce food objects. Once food is drawn into the mouth, a structure called the buccopharyngeal apparatus activates. This is a combination of spines and muscle that acts like an inner jaw that pulls food into the digestive tract. The buccopharyngeal apparatus is distinct enough to be used as a major identifying feature between species. Tardigrades are translucent and many images you've seen of them have false color to show the details or are 3D models based on scanning electron microscope imagery of them. Tardigrades molt their exoskeletons multiple times (up to 12) during their lifecycle. Some species are unable to poop normally and instead all their waste is discarded during the molt. It was formerly believed that tardigrades could exchange genes with each other without mating, a process called horizontal gene transfer that is seen in bacteria, archaea, and other micro-organisms. It has since been discovered that while still capable of horizontal gene transfer, it is quite a bit rarer in tardigrades than we thought.
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(Image: an electron microscope image of a tardigrade standing on a bit of plant matter. This one has a closed mouth with a ring of triangular tooth-like structures. It also has two simple eyes that look like black dots. End ID)
The name "tardigrade" means "slow walker", which is fitting as, despite their eight legs, tardigrades have a slow and awkward gait. This is the result of their legs being unjointed, only able to pivot at their connection to the body. Their gait has been compared to that of bears, hence why they are often called water bears and their discoverer, Johann August Ephraim Goeze, called them "kleiner wasserbär", meaning "little water bear". Tardigrades are found worldwide and have inhabited virtually every habitat, from the tops of mountains to the deep sea, from hot springs to the antarctic, from freshwater to saltwater. The one thing they have in common is a need to stay wet. Tardigrades can survive out of water as long as they can stay moist and are often found in mosses, hence another common name: moss piglets. The majority either eat plants or bacteria, but some will feed on smaller tardigrades or other micro-animals. Their famous survivability makes it easy for tardigrades or their eggs to be carried to new habitats by larger animals or other phenomena. Tardigrades are one of the first micro-animals to colonize a new habitat and they are a pioneer species, the first species to colonize a new environment and whose presence makes that environment fore suitable for other species to follow. Tardigrades are a major food source to other micro-animals and larger organisms. Most species have distinct males and females, though a few reproduce through parthenogenesis. In most cases, molting female will lay her eggs in her shed cuticle and males will them fertilize them. Other species have a form of internal reproduction. Males and females will court each other before mating and females will usually allow multiple males to fertilize her eggs. Female tardigrades are typically larger and more abundant than males. Eggs can take up to 14 days (species dependent) before hatching. All tardigrades of the same species have the exact same number of cells as each other. They are also born with the same number of cells they will have as an adult. Their growth is driven by enlargement of the existing cells rather than cellular reproduction making new cells. The lifespan ranges between a few months to a few years, depending on species.
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(Image: a color photo of a tardigrade. It is a pale, translucent white, making it hard to make out details. Its body is curved, with the front end pointing at the camera. It has two simple eyes. End ID)
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(Image: an electron microscope image of a tardigrade egg. It is round but covered in small pores and conical structures. End ID)
The most famous feature of tardigrades is their legendary durability. It is commonly said that tardigrades can survive just about anything (except for the things that are actually trying to kill them. They are prey to a lot of species after all). Among the things they can survive is extreme heat, extreme cold, dehydration, extremely high and low pressure, exposure to ionizing radiation (that's the scary kind), low oxygen environments, environmental toxins, heavy impacts, and the vacuum of fucking space. While the can survive in extreme conditions, tardigrades are not considered extremophiles. True extremophiles thrive in extreme environments and are negatively impacted by leaving them. Tardigrades can survive in extreme environments, but are negatively impacted and can't survive as well there as they can in less extreme places. The main trait that has allowed tardigrades to survive all five mass extinctions in history is cryptobiosis. Cryptobiosis is the rare ability for an animal to enter a state of dormancy where their metabolic processes come to an almost complete stop. While in cryptobiosis, metabolic activity drops to 0.01% normal and water content drops to 1% normal. In this state, the tardigrade is called a tun. Tardigrades usually enter cryptobiosis in response to arid conditions. One experiment showed that a species of tardigrade could last for at least 30 years in this state and return to normal lifestyle functions when exposed to water. Tardigrades will also enter cryptobiosis in response to low oxygen, toxic chemical exposure, increased or decreased temperature, and excessive salt content in the water. Tardigrades also show extreme resistance to both high and low pressure. They can live in 0 atmospheres of pressure and some species can survive up to 6,000 atmospheres, more than double the pressure at the bottom of the Marianas trench. More interesting is their ability to survive dangerous radiation. They can survive 1,000 times the dose of gamma radiation that humans can. Early tests focused on tardigrades in cryptobiosis and concluded that the extremely low water content of a cryptobiotic tardigrade doesn't leave much opportunity for the radiation to react with the animal. However it was later found that active and fully hydrated tardigrades are still considerably resistant to radiation. Studies into this resistance indicate that tardigrades can very efficiently repair damaged DNA and have unique proteins called Dsup that provides additional protection. Dsup introduced to human cells has provided additional protection against x-rays.
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(Image: an electron microscope image of a tun - a tardigrade in cryptobiosis. It is smaller and very wrinkly, with the legs and mouth retracted into the body. End ID)
Tardigrades were the first animals to be exposed to the vacuum of space. They were exposed for 10 days, some in a state of cryptobiosis at the time of exposure and some still active. It was found that they were able to survive the vacuum when shielded from the sun's ultraviolet radiation, with those already in cryptobiosis doing better. Upon being rehydrated, many were able to resume normal life functions and successfully reproduce, though others died after being rehydrated. Those that were exposed to UV radiation fared much worse, with only a few hydrated individuals surviving. The individuals in cryptobiosis had a lower survival rate when exposed to UV than those not exposed to UV and were less successful at reproducing afterwards. Studies of tardigrade's space survival abilities and resistance to radiation could go a long way in helping human space travel. One of the largest dangers of space travel is that space is full of nasty radiation from the sun that Earth's magnetic field protects us from. Some scientists speculate about the possibility of accidentally seeding other planets or moons with tardigrades or other space-resistant organisms. This is a problem because introducing Earth life to other world has the potential to damage any native ecosystems and if we find life in space in the future we don't want to have to figure out if it's something we accidentally put there. While tardigrades could likely survive on other planets, they would eventually die without a food source. Some sources reported that tardigrades may have colonized the moon after an experiment with them crashed. Unfortunately, the moon is not crawling with tardigrades now. It's way too dry for them to exit cryptobiosis even if they survived the crash, which they probably didn't.
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(Image: art of a tardigrade floating in the vacuum of space. End ID. Source: University of California - Santa Barbara)
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goblincow · 8 months
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CATS or What Is This RPG or Setting The Table
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So I just heard about CATS courtesy of the good folks in the PlusOneExp discord server. CATS was written by Patrick O'Leary for the 2016 200 Word RPG Challenge.
It's nice and short (200 words even) and it's a compelling formula for the classic What Is This TTRPG segment that warrants a page at the front of every good RPG book.
I find it particularly interesting that this is imagined as a micro-RPG in its own right, a table activity for the start of game night that sets out to address what I have always found to be the most painful aspect of playing any TTRPG (besides tedious and arcane character creation rituals – I'm looking at you 5e PHB 👀): the friction that arises from players having discordant, conflicting, contradictory or incompatible expectations during play.
We can formulate the basic strucure of CATS in a variety of ways: Concept/Aim/Tone/Subject Matter, What/Where/When/Who/Why/How, Premise/Overview/Goals/What You Need, etc. all of which can be applied in two immediate directions:
In a What Is This RPG section, these are just codified methods for teaching the player/reader (more of my thoughts on the player/reader here) how to read and communicate everything that comes next in a way that's both more focused than a blurb (which might basically constitute the Concept/Premise/Hook) and more comprehensive than an elevator pitch.
As a launchpad for table play, these structures guide the conversation to establish the pillars of the shared fiction, and I especially appreciate CATS for the fact that it ends on Subject Matter. It could be the consequence of a tortured acronym, but having set the stage in every other way it seems appropriate to hop into safety tools as the final as the final negotiation before play, once all context is provided but nothing is yet set in stone.
That's all he wrote on CATS.
In THE PERILOUS PEAR & PLUM PIES OF PUDWICK I wrote a conversation guide to the meat of the adventure on pg. 11, following an introductory segment of the game that functions as a session 1 prologue of sorts before delving into the hexflower "dungeon" microsetting, inciting incident et al. It's interesting for me to look back at the way I structured this from the perspective of CATS.
If you're curious about TPPAPPOP and want a sneak peak of what you can expect, here's that segment from pg. 11, Inside The Tree:
Resources: the insects of the tree live in darkness and have varying weird diets – you might decide that tracking resources like light and food is important, or maybe at this scale adventurers can survive on the honeydew, leaves and strange meats that the insects eat. Sights and Sounds: footsteps might sound like earthquakes, voices like distant thunder. What are the twitches and mannerisms of the chittering language of insects? How does artificial light disturb the denizens of the tree? Setting and Tone: to adjust the game to your group's preference, you might lean into the existential conflict of intruding on and potentially dooming these fledgling societies, or downplay the crawling horror of an insect world to allow its cuter side to shine through.
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taxonomytournament · 2 months
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Taxonomy Tournament: Invertibrates
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Pterobranchia. This class is made up of small worm-shaped sessile marine filter feeders that life in secreted tubes.
Tardigrada. This phylum is made up of tardigrades, also known as water bears, eight-legged segmented micro-animals. They're among the most resilient animals, able to survive high and low extremes in temperature and pressure.
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