How to become Research Scientist | #ScienceFather #researchers

 A Research Scientist is a professional who conducts scientific research and contributes to the advancement of knowledge in their respective fields. They work in various domains such as natural sciences, social sciences, engineering, medicine, technology, and more. Research Scientists are typically employed by academic institutions, research organizations, government agencies, and private companies.


Becoming a Research Scientist typically involves a combination of education, research experience, and a passion for scientific inquiry. While the specific path can vary depending on the field of study, here are general steps to pursue a career as a Research Scientist:

  • Choose a Field of Study: Determine the field of research that aligns with your interests and career goals. This could be in natural sciences (biology, chemistry, physics), social sciences (psychology, sociology, economics), engineering, medicine, or any other discipline with a strong research component.
  • Obtain a Bachelor’s Degree: Start by earning a bachelor’s degree in a relevant field. Choose a program that provides a strong foundation in scientific principles, research methodology, and analytical skills. It’s advisable to select courses and research projects that align with your area of interest.
  • Gain Research Experience: Seek opportunities to gain research experience while pursuing your undergraduate degree. This can include working as a research assistant in a lab, participating in research projects, or engaging in internships or summer research programs. This hands-on experience will expose you to the research process and help develop essential skills.
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WHO guidance for digital health application and future research | nesin.sciencefather.com

The World Health Organisation (WHO) has released guidance for digital health after performing a critical and in-depth review on the literature available. It has generated an overview on the benefits, harms, acceptability, feasibility, resource use and equity considerations of digital health interventions. It also provides insights for researchers engaged in designing, developing and validating the digital interventions. The guidelines are also foreseen to greatly impact the future research for digital applications.




It is certain that digital solutions support patients and physicians in achieving their medical goals. They have been also increasingly adopted in health care. However, data is lacking on the impact of digital applications on health care. As number and types of digital solutions increasing, there is an immediate requirement to develop evidence-based insights for the integration of these solutions in medical practices. This paper provides an overview of the guidelines and insights for researchers engaged in the development and validation of digital interventions. It also recommends that the digital tools should be developed and implemented in accordance with the principles of digital development. It extends guidance for building a supportive environment for better adoption of digital health.

Using digital means to complement the traditional education, in training and education of healthcare professionals is definitely recommended. However studies evaluating the validation of learning content are limited that makes it difficult to draw firm conclusions. Researchers need to be vigilant in using over increasing digital tools. Additionally, sustained efforts are demanded in the development of novel digital tools that could benefit both patient and physicians in health care.

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Pure Water: The Unsung Hero Of The Lab

 Pure water plays a pivotal role in almost every life science experiment, diagnostic test or chemical reaction. It’s so important, there’s even a high impact journal dedicated to reporting on new water-based research and purification methods. Sadly, lab water still rarely gets the attention it deserves. 


Without pure water, very few experiments, tests or reactions would be possible. Thanks to its favorable chemical and physical properties, water is often considered the ‘universal solvent’ as it dissolves more substances than any other liquid. Perhaps even more importantly, many biochemical reactions will only take place within aqueous solutions.

One potential limitation of water is that it is a weak eluent and a poor solvent of most organic compounds, due to it being highly polar at ambient temperatures. However, superheated water at 200°C has similar properties to typical organic solvents such as methanol, so it can be used to dissolve many organic compounds. This adds even more credibility to water’s status as the universal solvent and means you can use it in a wider range of applications, such as separation and extraction science. Even better, water is cheaper, less flammable and more environmentally friendly than most organic solvents – more great reasons why water is an essential reagent in the lab!

Ultra-Sensitive Analytics that Rely on UltraPure Water are Fuelling Cutting-Edge Science


Some of the most interesting science being carried out at the moment pushes the boundaries of analytical sensitivity. Techniques such as inductively-coupled plasma mass spectrometry (ICP-MS), thermal ionization mass spectrometry (TIMS) and ICP atomic emission spectrometry (ICP-AES) allow researchers to explore biological and chemical systems in more detail and at greater resolution than ever before, including being able to detect the presence of chemicals and factors at trace (<100 ppm) and ultra-trace (<1 ppm) concentrations.

As an example, such sensitivity allows us to detect low expression biomarkers so that we can better diagnose and treat patients, helping to turn the promise of personalized medicine into a reality. High sensitivity analysis is also highly useful when working with environmental samples, so that researchers can better track global climate and environmental change.

International Research Awards on New Science Inventions Join us for the International Research Awards on New Science Inventions, a premier event in the realm of research. Whether you're joining virtually from anywhere in the world, this is your invitation to explore and innovate in the field of research. Become part of a global community of researchers, scientists, and professionals passionate about advancing research. Visit Our Website 🌐: nesin.sciencefather.com Nomination👍: https://new-science-inventions.sciencefather.com/young-scientist-research-awards/ Contact us ✉️: nesinsupport@sciencefather.com #ScienceFather #shorts #technology #researchers #labtechnicians #conference #awards #professors #teachers #lecturers #biologybiologiest #physicist #coordinator #business #genetics #medicine #labtechnicians #agriculture #bestreseracher #bestpaper Get Connected Here:
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Scientists identify antibody 'SC27' to counter all Covid-19 variants | sciencefather.com

 Researchers have discovered an antibody that could counter all known variants of the coronavirus that causes COVID-19 and also distantly related ones that infect other animals.

SARS-CoV-2, the coronavirus causing COVID-19, ScienceFather uses its spike protein to invade and infect another individual, or the host. Antibodies, produced by the host in response, bind to the spike protein to block its action and prevent infection.

The researchers, led by those at The University of Texas in Austin, US, isolated the antibody 'SC27' from the plasma donated by four patients. ScienceFather These patients had breakthrough infections, which occur when a vaccinated individual gets infected.


The research has been published in the journal Cell Reports Medicine.
Over the more than four years since the first case of COVID-19 emerged, SARS-CoV-2 has evolved to acquire certain characteristics which make the virus resistant to vaccines and treatments.ScienceFather
The authors said the 'SC27' antibody recognised all these various characteristics of the spike proteins across COVID-19 variants.

"One goal of this research, and vaccinology in general, is to work toward a universal vaccine that can generate antibodies and create an immune response with broad protection to a rapidly mutating virus," said one of the lead authors William Voss, a PhD graduate in cell and molecular biology at The University of Texas.

International Research Awards on New Science Inventions Join us for the International Research Awards on New Science Inventions, a premier event in the realm of research. Whether you're joining virtually from anywhere in the world, this is your invitation to explore and innovate in the field of research. Become part of a global community of researchers, scientists, and professionals passionate about advancing research. Visit Our Website 🌐: nesin.sciencefather.com Nomination👍: https://new-science-inventions.sciencefather.com/young-scientist-research-awards/ Contact us ✉️: nesinsupport@sciencefather.com #ScienceFather #shorts #technology #researchers #labtechnicians #conference #awards #professors #teachers #lecturers #biologybiologiest #physicist #coordinator #business #genetics #medicine #labtechnicians #agriculture #bestreseracher #bestpaper Get Connected Here: ================== Twitter : twitter.com/ScienceInventi1 Pinterest : in.pinterest.com/scienceinventions/..... Tumblr : kayleerowan.tumblr.com..... Instagram : www.instagram.com/kaylee_rowan_ Linkedin : www.linkedin.com/feed/ Facebook : facebook.com/kaylee.rowan.92

Iranian Scientist’s Invention Prevents Water Wastage, Breakage of Containers in Labs.

 “Due to the lack of control in the electrical measurement of pressure and temperature in the laboratory environment and using laboratory glassware, the laboratory containers are broken sometimes and also a lot of water is used to cool the glasses during the experiment,” Medisa Kamari, a Ph.D. student of Analytical Chemistry at Islamic Azad University’s Ilam Branch, told ANA.




“Therefore, we decided to create a system to increase the safety level of tests that are performed at high temperature and pressure, and completely omitted water to cool and control the test until reaching the product. Some features of other devices in the laboratory to this device, which causes simultaneous use, increases the speed of the experiment, and eliminates the need for laboratories to use several devices,” she added.

Kamari described full elimination of water for cooling, preventing water wastage, temperature measurement and control, system pressure measurement and control, the possibility for emergency temperature and pressure reduction, and the simultaneous use of shaker and ultrasonic as the advantages of the new device.

A laboratory network has been formed in Iran with the aim of creating a suitable platform for providing laboratory services to academic and industrial researchers and using the country's laboratory capacities better.

The network created under the supervision of the Nanotechnology Development Headquarters of the Iranian Vice-Presidency for Science, Technology and Knowledge-Based Economy is aimed at sharing laboratory devices and services and help researchers have better access to these infrastructures and services.

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How to Become a Research Scientist | #Sciencefather #researcher | sciencefather.com

 Professionals with a background in biotechnology can choose to pursue many lucrative careers. ScienceFather One of the most common choices is to become a research scientist. These individuals work in drug and process development, consistently conducting research and performing experiments to help move the biotechnology industry forward. 



“At the highest level, a research scientist is somebody who can design and execute experiments to prove or disprove a hypothesis,” says Jared Auclair, director of the biotechnology and bioinformatics programs at Northeastern. ScienceFather “Within the world of biotechnology, that can mean a number of different things, from creating new drugs to improving the process of how we make a drug.”


Professionals in this industry are often drawn to the wide array of applications of this work, as well as the consistently positive career outlook. The average salary of a biotechnology research scientist is $85,907 per year, with plenty of opportunities for increased salary potential depending on specializations, location, and years of experience. 

These factors—alongside the growing demand for advancement in biotechnology over the last few decades—have led many aspiring biotechnologists to consider a career in research science. ScienceFather Below we offer five steps professionals can take to kick-start a career in this field.


International Research Awards on New Science Inventions


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#ScienceFather #shorts #technology #researchers #labtechnicians #conference #awards #professors #teachers #lecturers #biologybiologiest #physicist #coordinator #business #genetics #medicine #labtechnicians #agriculture #bestreseracher #bestpaper Get Connected Here: ================== Twitter : twitter.com/ScienceInventi1 Pinterest : in.pinterest.com/scienceinventions/..... Tumblr : kayleerowan.tumblr.com..... Instagram : www.instagram.com/kaylee_rowan_ Linkedin : www.linkedin.com/feed/ Facebook : facebook.com/kaylee.rowan.92

Will 2025 be a turning point for Open Access?

With a number of deadlines for open access (OA) coming up in 2025 and beyond, the race is on for many publishers to make the transition to OA. Simon Linacre asks, are these targets achievable?


Traditionally, September and October have always been one of the busiest – and most interesting – times to be in the publishing industry. Back in the day, September would be the deadline for the first of the following year’s issues to be collated by editors, while in more recent times big events like the ALPSP Conference, the Frankfurt Book Fair and Open Access Week have set the agenda for the remainder of the year and beyond.

In 2024, this period has perhaps more intrigue than most given a number of deadlines and political events occurring in the next 12 months or so, many of them revolving around open access (OA) and its further adoption. But will things pan out the way people anticipate, and are there solutions that can be used to help forge a path through so many uncertainties about the future?

Conference season

At the recent ALPSP Conference in Manchester in September, there was a good deal of discussion about how open access had developed this year, and its potential progress in 2025 and beyond. Perhaps unsurprisingly at a conference full of publishers, the mood was a little downbeat when it came to the theme of OA, but not for the reasons one might think. Reading between the lines, there was a frustration at the shifting sands many felt they had to constantly navigate, in the shape of changing or newly introduced policies, and a sense that innovation was being stymied as a result.

For example, the tone for OA seemed to have been set by the JISC report on transformative agreements (TAs) which was published in the UK earlier in 2024. This made for somber reading, with the headline prediction that while the UK’s transitioning to OA was faster than most countries, based on the journal flipping rates observed between 2018–2022 it would take at least 70 years for the big five publishers to flip their TA titles to OA. 

With this in mind, the fact that there were deadlines for Plan S set for 2025 around transition that seemed unlikely to be met, and with the OSTP memo in the US mired in committees and a potential change on the cards in the White House, the belief among many publishers was that the move to OA was not happening at the pace or in the direction that many thought it would.

Geopolitical calculations

In addition to what is happening in the UK, Europe and in the US, events further afield are also causing publishers to take stock of their medium-to-long-term strategies. The publication of authors based in Russia has declined sharply since the invasion of Ukraine in early 2022, and collaboration between US authors and those based in China have also decreased, possibly due to policy changes by the Chinese government favoring publication in China-based journals, but also potentially due to fears about research security issues in the US and in other countries. 

China’s move to OA is also happening at a much lower level than many countries, which is significant as it takes up such a high percentage of published articles, passing the US a few years ago as the world’s most prolific publisher of research articles. As a result, despite the increase in the number of TAs being agreed with universities, publishers are still seeing a high degree of uncertainty in the transition to OA.

Forward motion

This uncertainty will be in the back of publishers’ minds when celebrating OA Week this year, coming as it does every year on the back of major conferences such as ALPSP and Frankfurt, and in the midst of fine tuning budgets for the following year. At Digital Science, we understand this predicament given how closely we work with publishers as customers, and also because many of us have worked in the publishing industry ourselves. As such, we have been analyzing how Digital Science solutions can help publishers steer a path forward on OA and transformative agreements, and have created this use case for Dimensions in support of our community.

This resource has been designed to reflect the period of change that the publishing industry is undergoing, supporting the need for publishers to create, evaluate and negotiate TAs by delivering a strong range of historical and predictive data through Dimensions. Using the Dimensions database – which now holds data on almost 150m publications as well as details on funding, grants and patents – publishers can easily find and analyze data surrounding authorship across categories such as country, geography, institution and funder. Understanding a given discipline’s current or future state of play can complement publishers’ own data and inform their strategies accordingly.

Solid state

The theme of this year’s OA Week – ‘Community over Commercialization’ – is a deliberately provocative one, and should engender a good deal of debate during the week and beyond. It should also broaden the conversation to adjacent areas such as open research and open science, as here we have policy and geopolitics making waves for everyone involved in the research ecosystem. 

The origin of some of these ripples can be seen in two upcoming reports from Digital Science. At the end of October, a new report on Research Transformation includes substantial input from those involved in academia on how OA is impacting on their work, while November sees the ninth annual State of Open Data report, tracking how researchers see open data issues developing as part of their work. Without giving too much away, both of these reports call for greater awareness of – and support using – the myriad of fast-developing technologies that are starting to impact academics and their institutions. As such, the community of interest that supports OA Week every year needs to work together in the ecosystem they all inhabit if those OA deadlines are to be met.


Simon Linacre

About the Author

Simon Linacre, Head of Content, Brand & Press | Digital Science

Simon has 20 years’ experience in scholarly communications. He has lectured and published on the topics of bibliometrics, publication ethics and research impact, and has recently authored a book on predatory publishing. Simon is an ALPSP tutor and has also served as a COPE Trustee.

The post Will 2025 be a turning point for Open Access? appeared first on Digital Science.



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