Listing 1 - 10 of 498 | << page >> |
Sort by
|
Choose an application
science --- life science
Choose an application
Life science publishing --- Publishers and publishing --- History
Choose an application
Now you can learn and apply the basic principles of writing style, composition, grammar, word usage, and misusage, to the field of health care. With the Health Professionals Style Manual you will learn to improve your message and communicate more effectively. With up-to-date resources and references, these are just some of the rules and tools you will learn to use in your own writing:.: Style and Substance.; Art of Effective Writing.; Tips and Pitfalls.; Redundancies, Euphemisms, and Cliches.; Computers and the Internet.; Common Abbreviations and Acronyms.; Commonly Misspelled Words.; Using Pr
Medical writing --- Medical publishing --- Medical literature --- Life science publishing --- Publishing
Choose an application
life science --- archaeology --- science --- biology --- paleontology --- complex systems --- Science
Choose an application
The integration of Environmental, Social, and Governance (ESG) factors is becoming increasingly vital in the pharmaceutical and life sciences sectors, aligning businesses with global sustainability goals and ensuring long-term resilience. This study analyses the diverse approaches companies and investors are taking to incorporate ESG into their strategies, revealing the complexities and strategic considerations involved. Companies are embedding ESG into their core operations, focusing on materiality assessments, governance, social impact, environmental sustainability, and ethical practices. These efforts aim to enhance transparency, build stakeholder trust, and adapt to evolving regulatory landscapes. However, implementing these strategies poses challenges, including resource allocation, regulatory navigation, and maintaining operational flexibility in a dynamic global market. On the investment front, ESG strategies in life sciences have evolved into a multifaceted landscape, with firms adopting methodologies tailored to regional focuses, regulatory environments, and strategic priorities. Approaches range from broad ESG leadership in emerging markets to targeted innovations in high-impact areas and hybrid models balancing global standards with local insights. Investors face challenges in managing data quality, balancing risk and return, and aligning ESG objectives with financial performance. Success depends on a deep understanding of material ESG issues, rigorous due diligence, and the ability to navigate regional and cultural complexities. Ultimately, the effectiveness of ESG integration by both companies and investors will determine their ability to drive sustainable impact and create long-term value. Success in this area requires a deep commitment to ESG principles and the flexibility to adapt to shifting regulatory landscapes, technological advancements, and stakeholder expectations. As the pharmaceutical and life sciences sectors continue to evolve, strategic ESG integration will be crucial in shaping future growth and success.
Choose an application
Biotechnology is the scientific field of studying and applying the most efficient methods and techniques to get useful end-products for the human society by using viable micro-organisms, cells, and tissues of plants or animals, or even certain functional components of their organisms, that are grown in fully controlled conditions to maximize their specific metabolism inside fully automatic bioreactors. It is very important to make the specific difference between biotechnology as a distinct science of getting valuable products from molecules, cells or tissues of viable organisms, and any other applications of bioprocesses that are based on using the whole living plants or animals in different fields of human activities such as bioremediation, environmental protection, organic agriculture, or industrial exploitation of natural resources. The volume Advances in Applied Biotechnology is a scientific book containing recent advances of selected research works that are ongoing in certain biotechnological applications. Fourteen chapters divided in four sections related to the newest biotechnological achievements in environmental protection, medicine and health care, biopharmaceutical producing, molecular genetics, and tissue engineering are presented.
Bioengineering. --- Biotechnology. --- Chemical engineering --- Genetic engineering --- Biological engineering --- Life science engineering --- Biology --- Engineering --- Synthetic biology --- Biotechnology
Choose an application
Medical literature --- Medical publishing --- -Medical literature --- Life science publishing --- Life sciences literature --- Medicine --- Publishing --- Medical literature.
Choose an application
The technological approach and the high level of innovation make bioengineering extremely dynamic and this forces researchers to continuous updating. It involves the publication of the results of the latest scientific research. This book covers a wide range of aspects and issues related to advances in bioengineering research with a particular focus on innovative technologies and applications. The book consists of 13 scientific contributions divided in four sections: Materials Science; Biosensors. Electronics and Telemetry; Light Therapy; Computing and Analysis Techniques.
Bioengineering. --- Science: general issues --- Biological engineering --- Life science engineering --- Biology --- Engineering --- Synthetic biology --- Biotechnology
Choose an application
My idea of a theory in biology is quite different from the theoretical biology that is expressed as equations of observed or photographed phenomena. I have a simpler, more concrete conception. Not a mathematical description of what is seen, but an evolving model, a tool developed through bricolage, with mathematics perhaps, but also natural language: one that serves above all to understand the unseen; to guess, beneath the visible, the invisible dimensions of life forms, the underlying “logic”.
History & Philosophy Of Science --- biology --- development --- genetics --- morphogenesis --- genome --- life science --- proteins
Choose an application
Biotechnology. --- Bioengineering. --- Biological engineering --- Life science engineering --- Biology --- Engineering --- Synthetic biology --- Chemical engineering --- Genetic engineering
Listing 1 - 10 of 498 | << page >> |
Sort by
|