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asterkurayami · 11 months
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debutart · 1 year
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DNA Life for ThermoFisher by artist Sam Falconer.
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internetsites · 3 months
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Погружайтесь в мир инноваций с нашим каналом "Все для лабораторий" на https://dzen.ru/thermo_fisher! 🌐🔍 Parts-Lab.ru - ваш надежный партнер в обеспечении бесперебойной работы лаборатории. Мы специализируемся на предоставлении оригинальных запасных частей, расходных материалов и комплектующих для лабораторных приборов.
Сотрудничая напрямую с ведущими производителями, такими как Thermo Fisher Scientific, Agilent, SPECTRO Analytical Instruments, Glass Expansion, Thermo Scientific DIONEX, мы гарантируем высочайший стандарт качества. Наш ассортимент включает колонки для газовой (ГХ) и жидкостной хроматографии (ВЭЖХ), колонки для ионной хроматографии, эталонные материалы, масла для спектрометров ARL, вакуумные смазки, ионные и перистальтические насосы, а также запчасти для спектрометров серии ARL и систем ионной хроматографии Dionex ICS.
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bizabert · 8 months
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thermofisher give me the DNA zip jacket challenge
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uniquejobs · 10 months
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Thermofisher Off Campus 2023 | Digital Engineering Intern | Fresh Graduates | Apply now
Introduction Thermofisher Off Campus 2023 :Thermofisher has Published notification for the vacancy of Digital Engineering Intern The educational qualification required to apply for this Thermofisher is B.E.Engineers Interested and eligible candidates can apply for Thermofisher Off Campus 2023. There is enough time to apply for any job. Read Thermofisher date, last date to apply, full details…
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lajicarita · 1 year
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Alert! Is it safe?
Editor’s Note: This is a reprint of Joni Arends’ letter to the Santa Fe New Mexican regarding the proposed rezone and development of land in Santa Fe that may be contaminated by radiation. By JONI ARENDS, Executive Director of Concerned Citizens for Nuclear Safety At 7 p.m. Wednesday, the City Council will hold a special meeting to decide whether to rezone 22 acres of open space on South Meadows…
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soberscientistlife · 10 months
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HeLa cells have become a cornerstone of modern medicine, enabling countless scientific and medical innovations, including the development of the polio vaccine, genetic mapping and even Covid-19 vaccines. ThermoFisher is a conglomerate shark in Life Sciences.
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caesarsaladinn · 6 months
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thanks, ThermoFisher, for that very useful information
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gethired01 · 10 days
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ThermoFisher is hiring
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Hey graduates, TheromFisher is hiring for Software Engineer.
Go and apply!!!
Link in BIO
📌𝘊𝘰𝘮𝘮𝘦𝘯𝘵 "hire" 𝘪𝘧 𝘪𝘯𝘵𝘦𝘳𝘦𝘴𝘵𝘦𝘥
📢 Follow @gethired01
📢 Follow us for daily update .
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vinnaasblog · 24 days
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Invivo Imaging Market Detailed Strategies, Competitive Landscaping and Developments for next 5 years
In vivo imaging is the non-invasive visualization of living organisms for research and diagnostic purposes. Different material are used to visualize cellular and molecular functioning of living organisms. Biomarkers, radioactive materials like radioisotopes are used for molecular imaging.  In vivo research comprises of the observing and visualising all molecular processes with or within an entire, living organism. Study of animal models or human clinical trials are majorly demands for In vivo imaging techniques. This method is differentiated into two key areas morphological imaging and molecular imaging. Molecular imaging involves visualisation of cellular functions by using biomarkers. However, anatomical imaging visualization is based on the fundamental properties of the tissues and organs. This tissue and organs are observed by of X-rays & computed tomography. This is use to study morphological and molecular changes, process in targeted delivery of drugs, toxins, enzymes, or DNA research applications. Augmenting new launching of diagnostics kits & wide applicability in number of therapeutic areas leads to the demand for In vivo imaging globally. Further, the demand for In vivo imaging has been raised particularly for cancer diagnosis and oncological drugs diagnostics. Thus raised expenditure for cancer research and treatments impacts on the demand in positive manner. For Instance, according to the study, in 2018 the global expenditure on cancer research was USD 150 billion and it is expected to rise in upcoming years.
Free Sample Report + All Related Graphs & Charts @: https://www.advancemarketanalytics.com/sample-report/167336-global-invivo-imaging-market?utm_source=Organic&utm_medium=Vinay
Latest released the research study on Global Invivo Imaging Market, offers a detailed overview of the factors influencing the global business scope. Invivo Imaging Market research report shows the latest market insights, current situation analysis with upcoming trends and breakdown of the products and services. The report provides key statistics on the market status, size, share, growth factors of the Invivo Imaging The study covers emerging player’s data, including: competitive landscape, sales, revenue and global market share of top manufacturers are TriFoil Imaging (United States), Berthold Technologies GmbH & Co.KG (Germany), New England Biolabs.  (United Kingdom), Bruker (United States), Promega Corporation. (United States), ThermoFisher Scientific (United States), PerkinElmer Inc.(United States), AbbVie Inc. (United States), DiscoveRx Corporation (United States), Biospace Lab S.A. (France), MILabs B.V. (Netherland),
Thanks for reading this article; you can also get individual chapter wise section or region wise report version like North America, Europe or Southeast Asia.
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rohan-gosavi · 25 days
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Single-Use Bioprocessing Market Size, Status and Forecast by 2031
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The Insight Partners market research Single-Use Bioprocessing Market Size and Share Report | 2031 is now available for purchase. This report offers an exclusive evaluation of a range of business environment factors impacting market participants. The market information included in this report is assimilated and reliant on a few strategies, for example, PESTLE, Porter's Five, SWOT examination, and market dynamics
Single-Use Bioprocessing market is evaluated based on current scenarios and future projections are added keeping the projected period in consideration. This report integrates the valuation of Single-Use Bioprocessing market size for esteem (million USD) and volume (K Units). Research analysts have used top-down, bottom-up, primary, and secondary research approaches to evaluate and approve the Single-Use Bioprocessing market estimation.
Detailed scrutiny of market shares, optional sources, and basic essential sources has been done to integrate only valid facts. This research further reveals strategies to help companies grow in the Single-Use Bioprocessing market.
Key objectives of this research are:
To contemporary market dynamics including drivers, challenges, threats, and opportunities in the Single-Use Bioprocessing market.
To analyze the sum and market estimation of the worldwide Single-Use Bioprocessing market
Based on key facets, market segments are added.
The competitive analysis covers key market players and their business strategies.
To examine the Single-Use Bioprocessing Market for business probable and strategic outlook.
To review the Single-Use Bioprocessing Market size, key regions and countries, end-users, and statistical details.
To offer strategic recommendations based on the latest market developments, and Single-Use Bioprocessing market trends.
Perks of The Insight Partners’ Single-Use Bioprocessing Market Research
Market Trends: Our report reveals developing Single-Use Bioprocessing market trends that are poised to reshape the market preparing businesses with the foresight to retain their competitive edge. This Market research report presents market trends, supply chain analysis, leading participants, and business growth strategies. This research covers technological progress and key developments covering various aspects of the inclusive market. It is valuable market research for existing key players as well as new entrants in the Single-Use Bioprocessing Market. Through inputs derived from experts, this research attempts to guide future investors about market details and potential returns on investment. 
Competitive Landscape: This research reveals key market players, their strategies, and possible areas for differentiation.
Analysts Viewpoint: We have industry-specific experts who add credibility to this report with their exclusive viewpoints based on market understanding and expertise. This report goes further into details of entire business processes and doesn’t restrict to only operational aspects. These insights cover venture economics and include tactics for capital investment, investor funding, and projections of ROIs.  Net income and profit loss financial stats are crucial metrics of this Single-Use Bioprocessing market report. With these meticulous insights companies can reduce their risks and increase the success rate in the coming decade. 
Segmental Coverage:
Product
Simple and Peripheral Elements
Apparatus and Plants
Work Equipment
Workflow
Upstream
Fermentation
Downstream
End-user
Biopharmaceutical Manufacturer
Academic and Clinical Research Institutes
Others
Market Leaders and Key Company Profiles:
1. Corning Incorporated 2. Eppendorf AG 3. General Electric Company (GE Healthcare) 4. JM BIOCONNECT 5. Meissner Filtration Products, Inc. 6. Merck KGaA 7. Pall Corporation 8. Rentschler Biopharma SE 9. Sartorius AG 10. ThermoFisher Scientific 
What all adds up to the credibility of this research?
A comprehensive summary of the contemporary Single-Use Bioprocessing market scenario
Precise estimations on market revenue forecasts and CAGR to rationalize resources
Regional coverage to uncover new markets for business
Rivalry analysis aims to help corporations at a modest edge
Facts-based crystal-clear insights for business success
The research can be customized as per business necessities
Access to PDF, and PPT formats of this research
Published by -
Rohan Gosavi
Senior Market Research Expert at The Insight Partners
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Swab and Viral Transport Medium Market Size, Share, Price, Trends, Growth, Analysis, Report and Forecast 2024-2032
The global swab and viral transport medium market size was valued at USD8.34 billion in 2023, driven by prevalence of point of care testing across the globe. The market size is anticipated to grow at a CAGR of 5.8% during the forecast period of 2024-2032 to achieve a value of USD 13.91 billion by 2032. Swab and Viral Transport Medium Market: Competitor Landscape
The key features of the market report include patent analysis, grants analysis, clinical trials analysis, funding and investment analysis, partnerships, and collaborations analysis by the leading key players. The major companies in the market are as follows:
• ThermoFisher Scientific • Becton, Dickinson and Company • Titan Biotech Limited
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mitivy · 3 months
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Gas chromatography of aniline in gasoline
keyword   Gasoline; Additives; Aniline; Gas chromatography;     CAS:100-61-8 N-MethylAniline    NMA  PACKING  : 22.5 net TONS ISO TANK or IBC 1000KG EXW USD  :  2.52US/KG we 1000monthly/ton payment  : TT 50% IN advance  ,the balance  by delivery the goods    MIT-IVY INDUSTRY is Product  organic intermediates in China.which location in  suzhou city  ANHUI  privince.Welcome to  our factory.   introduction Due to the restriction of domestic petroleum energy and refining technology, the oil products produced by regular refineries in the market are in short supply, which makes a large number of blended oil products flood the market. Regular blended gasoline is mainly blended with mixed aromatic naphtha (light oil) as raw materials. However, in the background of high raw material prices and maximization of profits, aniline compounds are often used as unconventional gasoline additives. In order to make the quality index of gasoline with such additives meet the national automobile gasoline standard, for example, adding 1% (mass fraction) N-methylaniline can increase the octane number by 2-4 units . However, aniline additives have potential hazards to the mobility and safety of vehicles, and N-methylanilines are nitrogen-containing compounds, which will lead to an increase in the content of nitrogen oxides in automobile exhaust, causing harmful effects on atmospheric environment and human health. The main components of aniline additives include aniline, N-methylaniline, o-methylaniline, p-methylaniline, m-methylaniline and N, n-dimethylaniline. Currently, the commonly reported methods for the detection of methylaniline compounds include naphthalene diethylamine spectrophotometry, gas chromatography-nitrogen chemiluminescence detection, high performance liquid chromatography, etc. . The traditional naphthalene diethylamine spectrophotometry interferes with the determination result due to the occurrence of side reaction, and the HPLC method is inevitably affected by the interference of gasoline matrix.   The gas chromatograph-nitrogen chemiluminescence detection method requires the preparation of an expensive nitrogen chemiluminescence detector that can selectively detect nitrogen. The recently drafted (yet to be published) national standard "Gas Chromatography for the Determination of Oxycompounds and aniline Compounds in Gasoline" also describes a method of analysis using Deans switch on two opposite polarity columns using the common and relatively inexpensive hydrogen ion flame detector. For this method, ThermoFisher Scientific has published an Application paper (Application Notes C GC-50). As a simplification, this paper introduces a faster single column method based on the local standard DB37/T-2650 issued by Shandong Province in 2015 . The results show that this method is simple to operate, with good repeatability and high accuracy. At the same time, the method was optimized to solve the problem of interference of aniline quantification by gasoline matrix composition. 2. Overview of the principle of the method On a polar polyethylene glycol (PEG) column, aniline compounds in automotive gasoline were separated from the gasoline matrix, and acetophenone was used as the internal standard. The contents of aniline, N-methylaniline, o-methylaniline, p-methylaniline, m-toluidine and N, n-dimethylaniline in automotive gasoline were determined by gas chromatograph equipped with flame ionization detector (FID), and the concentration of each component was calculated by reference to internal standard.   :One of our main products is N-MethylAniline, purity min 99%, CAS number 100-61-8, chemical formula C7H9N. 2:We have a total of 6 production lines, and now we are starting 2 equipment. The monthly output of NMA is 1000 tons. 3) If out of stock, We will immediately activate the other equipment to fulfill the order. 4:  Recently, the market demand is very large, we are now going all out to produce, the use of technology is continuous production method, that is, gas chromatography 5:  We have in stock  for 500tons ,can deliver goods at any times.(But I've got a few clients in talks. They should be booked up soon.) 6: Can you come to inspect our  the factory ? We understand that you will consider us only  we offer you the most reasonable price and the best quality. Please have a look at our catalogue. MIT-IVYINDUSTRYCO.,LTDMit-Ivy is a well-known fine chemicals,we are manufacturer in  Suzhou City, Anhui Province welcome to vist our factory. sample  is free Payment:DA 60 DAYS phone/whatsapp/wechat/telegram 008613805212761  [email protected] 产品 Product CAS 苯胺 Aniline 62-53-3 N-甲基苯胺 N-methyl aniline 100-61-8 间甲苯胺 M-Toluidine  MT 108-44-1 对甲苯胺 P-Toluidine  PT 106-49-0 邻甲苯胺 O-Toluidine  OT 95-53-4 2-甲基环戊二烯三羰基锰 MMT  Methylcyclopentadienyl manganese tricarbonyl (MMT) 12108-13-3 二甲苯 Xylene 1330-20-7 环己胺 Cyclohexylamine 108-91-8 N,N-二甲基对甲苯胺 N,N-DIMETHYL -P-TOLUIDINE 99-97-8 N,N-二羟乙基对甲苯胺 N,N-dihydroxyethyl-p-toluidine 3077-12-1. N,N-二甲基苯胺 N,N-dimethyl aniline  DMA 121-69-7 N-甲基-N-苄基苯胺 N-METHYL-N-BENZYLANILINE 614-30-2 N,N-二氰乙基苯胺 N,N-Dicyanoethylaniline 1555-66-4 N-乙基苯胺 N-ethylaniline 103-69-5 N-乙基-N-氰乙基苯胺 3-Ethylanilinopropiononitrile 148-87-8 N-乙基-N-苄基苯胺 N-Benzyl-N-ethylaniline 92-59-1 N-乙基-N-(3'-磺酸苄基)苯胺 N-Ethyl-N-benzylaniline-3'-sulfonicacid  EBASA 101-11-1 对羟基苯甲酸甲酯 Methyl Hydroxybenzoate 99-76-3 对羟基苯甲酸乙酯 Ethyl Hydroxybenzoate 120-47-8 对羟基苯甲酸丙酯 Propyl paraben 94-13-3 对羟基苯甲酸丁酯 Butyl 4-Hydroxybenzoate      94-26-8 邻苯甲酰苯甲酸甲酯 Methyl2-benzoylbenzoate 606-28-0 十四酸异丙酯 中文别名:豆蔻酸异丙酯;肉豆蔻酸异丙酯;IPM;异丙基酯;十四烷酸异丙酯 Isopropylmyristate 110-27-0 棕榈酸异丙酯 中文别名:十六酸异丙酯;十六酸-1-甲基乙基酯;十六烷酸异丙酯;IPP Isopropylpalmitate 142-91-6 硬脂酸单甘油酯 DMG    Monostearin Monoacylglyceride,MAC 123-94-4 三乙酸甘油酯 Triacetin 102-76-1 尿囊素 Allantoin 97-59-6 三氟甲磺酸 Trifluoromethanesulfonic acid   TFSA 1493-13-6 结晶紫内酯 Crystal violet lactone        cvl 1552-42-7 水性工业漆 Waterborne Coatings 邻硝基甲苯 2-Nitrotoluene/ONT 88-72-2 对硝基甲苯 4-nitrotoluene PNT 99-99-0 间硝基甲苯 3-Nitrotoluene/MNT Read the full article
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creative-news-alert · 4 months
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Gaseous and Liquid Helium Market is Estimated to Witness Strong Growth Owing to Increasing Demand from Various Industries
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The global gaseous and liquid helium market serves various end-use industries including healthcare, electronics, aerospace, nuclear energy, research and others. Gaseous and liquid helium finds wide applications in various diagnostic and therapeutic procedures in healthcare sector. It is used in NMR spectroscopy and MRI machines to produce strong magnetic fields essential for quality medical imaging. In electronics industry, helium is used for purging, pressurizing and cooling during manufacturing of semiconductors. The aerospace industry utilizes helium for various applications such as pressurizing fuel tanks, purging liquid propellant lines and as the lifting gas in airships and balloons. Rising demand from these industries is expected to drive growth of the market over the forecast period. The global gaseous and liquid helium market is estimated to be valued at US$ 7.05 Bn in 2023 and is expected to exhibit a CAGR of 6.3% over the forecast period 2023 to 2030, as highlighted in a new report published by Coherent Market Insights. Market Dynamics: Increasing demand from various industries is one of the major drivers fueling growth of the gaseous and liquid helium market. Helium finds wide range of applications across healthcare, electronics, aerospace and other industries. Growth in these end-use industries is directly influencing demand for helium over the forecast period. Additionally, helium is a non-renewable resource with limited reserves primarily located in the United States, Qatar and Algeria. Rising consumption coupled with finite supply is projected to drive its prices upward over the coming years. SWOT Analysis Strength: Helium is used extensively in applications such as MRI scanners, semiconductors manufacturing and airships where replacement is difficult. It provides operational advantages such as lower temperature and inert properties. The market has limited domestic producers and long term contractual agreements ensure supply stability. Weakness: Helium is a finite and non-renewable natural resource. Nearly all reserves are located in the United States, Qatar, and Algeria. Exploration and production activities are capital intensive with long lead times. Recycling rates are low due to its light molecular weight. Opportunity: Growing healthcare infrastructure in developing nations increases demand for medical-grade helium for MRI and CT scanners. The development of fusion power reactors will require huge volumes of helium for cooling over sustained high temperatures. Emerging technologies such as quantum computing offer new avenues. Threats: Geopolitical tensions could disrupt supply chains if major reserves come under government control of unstable regions. recycling rates remain low threatening future supplies. Technological advances may find substitutes for niche applications currently reliant on helium. Key Takeaways The global Gaseous and Liquid Helium market size is expected to witness high growth over the forecast period. The global gaseous and liquid helium market is estimated to be valued at US$ 7.05 Bn in 2023 and is expected to exhibit a CAGR of 6.3% over the forecast period 2023 to 2030. Regional analysis: North America dominates currently due to the presence of major reserves in the United States. Asia Pacific is expected to grow at the fastest pace owing to increased investment in healthcare and industrial infrastructure. China, Japan, and India are among the key consumers. Key players: Key players operating in the Gaseous and Liquid Helium market are ThermoFisher Scientific, Linde, Air Liquid, Messer Group, Matheson Tri-Gas, and Air Products. ThermoFisher Scientific leads with a significant market share supported by its medical-grade purification capabilities and global supply chain. Get more insights on this topic:https://www.newswirestats.com/gaseous-and-liquid-helium-market-size-and-outlook/
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jcmarchi · 6 months
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Materials science and engineering career fair connects students with industry opportunities
New Post has been published on https://thedigitalinsider.com/materials-science-and-engineering-career-fair-connects-students-with-industry-opportunities/
Materials science and engineering career fair connects students with industry opportunities
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Students in the MIT Department of Materials Science and Engineering (DMSE) got to mingle with potential employers interested in their specific skills this fall when the department held its first DMSE Career Fair.
More than 20 companies, organizations, and laboratories set up booths in Walker Memorial on Oct. 20 while undergraduates and graduate students streamed in wearing collared shirts and dress slacks and carrying resumes and business cards. Giants such as Corning, IBM, Intel, and ThermoFisher Scientific, as well as startups — including MIT and DMSE spinouts — were on hand to discuss job and internship opportunities.
“We are always hiring,” says Dina Yuryev PhD ’17, senior research engineer at Commonwealth Fusion Systems, a fusion power company with MIT roots.
Yuryev earned her PhD from DMSE in 2017. She shared that when she first looked for jobs, many were in computer science; fewer were materials-focused.
“Materials is such an important field and really critical for technology development both in fusion but also just in clean energy,” Yuryev says. “So it’s really cool to see all of these companies here who really care about materials.”
Tailored opportunities
Career Fair attendees appreciated the enthusiasm. One was Christian Duessel, a junior majoring in mechanical engineering. He plans to declare a double major this year in materials science and engineering.
“It’s nice that it’s smaller and more directed at us. If you’re going up to a company, they’re here because they want to hire Course Threes,” Duessel says, using the MIT naming convention for the major.
The event was hosted by DMSE’s academic office and FORGE, the department’s professional development and alumni relations program. Bringing together companies and organizations looking for materials science and engineering skills in one place is exactly what the organizers were looking to do — something that MIT’s annual Fall Career Fair, with hundreds of recruiters and thousands of attendees, can’t.
“This targeted approach ensures that our students have access to opportunities that align closely with their academic background and interests,” says Rebecca Shepardson, undergraduate administrator in DMSE.
Also, materials science and engineering is a rapidly evolving field with applications across industries, Shepardson says. “A specialized fair like this lets us showcase the breadth of hiring and internship opportunities — and it lets us connect students with employers that are really at the forefront of innovation.”
That diversity of application was not only evident in the recruiter roster, which included companies in energy, mining, health care, manufacturing, and more, but also the career goals of attendees.
Duessel, who is taking class 3.17 (Principles of Manufacturing), wants a process engineering position in semiconductor manufacturing.
“I’ve always been interested in manufacturing — how things actually get made,” Duessel says, “but then also I get to apply materials science principles and with a communication side to it — it’s a very people-focused job.”
Mrigi Munjal, a PhD student in DMSE who studies the supply chain for nickel in battery production, has a few years left before graduating but wants to see what jobs are out there.
“I’m just trying to understand what work culture is like for PhD students in startups and then maybe contrast that with the big companies to see if there’s a difference in roles and responsibilities,” Munjal says.
“Smart, passionate people”
On the other side of the booths, recruiters were equally interested in exploring the applicant pool. Tom Kalantar, senior research-and-development fellow at chemicals and plastics manufacturer Dow, was at the fair to talk to people about onsite interviews the company does at DMSE starting each August, as well as a digital internship program for scientists and engineers.
“The skills that the students bring or are acquiring here, and the creativity that they show in doing their work here, are the kinds of things that we are looking for broadly at Dow,” Kalantar says.
Kyle Dominguez ’20, a DMSE alumnus and research scientist at Sublime Systems, said his startup is hiring every kind of engineer — mechanical, chemical, materials science, civil. Sublime, which uses electrochemistry to make low-carbon cement, was founded by former DMSE postdoc Leah Ellis and Professor Yet-Ming Chiang.
“The biggest skill set that we’re looking for is smart, passionate people who want to change the way the world makes cement,” Dominguez says. The company is now expanding into its first commercial production phase. “There are a lot of problems to solve to get to the point where we’re actually at scale.”
While recruiters sought diverse talent, students like Kim Cheng had other reasons beyond an immediate job search for attending the DMSE event. The DMSE senior has a job lined up after graduation — she’s moving to Chicago to work at a 3D printing startup. She was at the fair mainly to show departmental spirit and support.
“If it was last year, I would have come fully prepared with my resume,” Cheng says.
Still, Cheng sees value for any student, with or without a post-graduation job, to visit career events and talk to recruiters, especially at one as targeted as the DMSE fair.
“It’s important to know your options and know the scope of the field,” Cheng says. “Just getting a better idea and getting more comfortable talking to representatives, I think, is an incredibly helpful skill.”
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themarketinsights · 7 months
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Oligonucleotides Market May Set Huge Growth by 2028
Latest released the research study on Global Oligonucleotides Market, offers a detailed overview of the factors influencing the global business scope. Oligonucleotides Market research report shows the latest market insights, current situation analysis with upcoming trends and breakdown of the products and services. The report provides key statistics on the market status, size, share, growth factors of the Oligonucleotides The study covers emerging player’s data, including: competitive landscape, sales, revenue and global market share of top manufacturers are ThermoFisher (United States), Eurofins Genomics (Germany), AM Chemicals (United States), TriLink BioTechnologies (United States), Sigma-Aldrich (United States), TAG Copenhagen (Denmark), Bioneer (South Korea), Biolegio (Netherlands), IDT (United States), Ella Biotech (Germany),
Free Sample Report + All Related Graphs & Charts @: https://www.advancemarketanalytics.com/sample-report/39944-global-oligonucleotides-market
Oligonucleotides Market Definition:
Oligonucleotide is derived from Greek word that is Oligo meaning few or small. It consists of 13 to 25 nucleotides and is used in research, genetic testing and forensics. Additionally, it contains short single stranded or double stranded polymers. Nucleotide consists of three units which are a base containing nitrogen, five carbon sugar, and phosphate groups. It is made to hybridize DNA or RNA sequences. Also, they are used for the detection of sequences that is complimentary to Oligonucleotides. Since, it has wide range of usage in research and development and biotechnology, it is fueling the market growth.
Market Trend:
Adoption of Advanced Strategies which Enhanced the Direct Selling
Market Drivers:
Rising Demand for High end Customized Oligos
Decreasing Costs of Sequencing Leading to Customized Nucleotides
 
Market Opportunities:
Rising Research and Development for Novel Products
Increasing Investments in R&Ds
 
The Global Oligonucleotides Market segments and Market Data Break Down are illuminated below:
by Type (DNA Oligos, RNA Oligos), Application (Gene expression experiments,, Probes for microarrays, Antisense technologies, In situ hybridization, Drug carriers), End Users (Pharmaceuticals, Research institutes, Diagnostic centers), Service type (Custom oligos, Predesigned oligos, Oligo synthesis)
Region Included are: North America, Europe, Asia Pacific, Oceania, South America, Middle East & Africa
Country Level Break-Up: United States, Canada, Mexico, Brazil, Argentina, Colombia, Chile, South Africa, Nigeria, Tunisia, Morocco, Germany, United Kingdom (UK), the Netherlands, Spain, Italy, Belgium, Austria, Turkey, Russia, France, Poland, Israel, United Arab Emirates, Qatar, Saudi Arabia, China, Japan, Taiwan, South Korea, Singapore, India, Australia and New Zealand etc.
Enquire for customization in Report @: https://www.advancemarketanalytics.com/enquiry-before-buy/39944-global-oligonucleotides-market
Strategic Points Covered in Table of Content of Global Oligonucleotides Market:
Chapter 1: Introduction, market driving force product Objective of Study and Research Scope the Oligonucleotides market
Chapter 2: Exclusive Summary – the basic information of the Oligonucleotides Market.
Chapter 3: Displayingthe Market Dynamics- Drivers, Trends and Challenges of the Oligonucleotides
Chapter 4: Presenting the Oligonucleotides Market Factor Analysis Porters Five Forces, Supply/Value Chain, PESTEL analysis, Market Entropy, Patent/Trademark Analysis.
Chapter 5: Displaying market size by Type, End User and Region 2015-2020
Chapter 6: Evaluating the leading manufacturers of the Oligonucleotides market which consists of its Competitive Landscape, Peer Group Analysis, BCG Matrix & Company Profile
Chapter 7: To evaluate the market by segments, by countries and by manufacturers with revenue share and sales by key countries (2021-2026).
Chapter 8 & 9: Displaying the Appendix, Methodology and Data Source
Finally, Oligonucleotides Market is a valuable source of guidance for individuals and companies in decision framework.
Data Sources & Methodology The primary sources involves the industry experts from the Global Oligonucleotides Market including the management organizations, processing organizations, analytics service providers of the industry’s value chain. All primary sources were interviewed to gather and authenticate qualitative & quantitative information and determine the future prospects.
In the extensive primary research process undertaken for this study, the primary sources – Postal Surveys, telephone, Online & Face-to-Face Survey were considered to obtain and verify both qualitative and quantitative aspects of this research study. When it comes to secondary sources Company's Annual reports, press Releases, Websites, Investor Presentation, Conference Call transcripts, Webinar, Journals, Regulators, National Customs and Industry Associations were given primary weight-age.
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