Mass Spectrometry


€50,31
Auteur James McCullagh (Associate Professor of Analytical Chemistry, Associate Professor of Analytical Chemistry, University of Oxford)
Taal ENG- Engels
Bindwijze Paperback
ISBN/EAN 9780198789048
Serie Oxford Chemistry Primers
Genre Onderwijs
Doelgroep Tieners en jongvolwassenen, Volwassenen en jong volwassenen, Volwassenen
BookTok categorie Studieboek / academisch
Title: Default Title
Price:
Sale price€50,31

Mass Spectrometry James McCullagh is an accessible textbook that provides a clear first introduction to the fundamental principles of mass spectrometry. This book is suitable for students, researchers, and professionals who want to build a solid foundation in this analytical technique.

Description

This title from the Oxford Chemistry Primers series covers the basic principles of mass spectrometry in a concise and understandable way. The book combines theoretical explanations with up-to-date examples and applications, making it relevant for both study and practice. With questions at the end of each chapter and online multiple-choice questions, it encourages active and in-depth knowledge acquisition.

In addition, figures, side notes, and a glossary enhance learning effectiveness. The online resources include self-assessments for students and downloads of figures for registered instructors.

Product specifications

  • Author: James McCullagh (Associate Professor Analytical Chemistry, University of Oxford)
  • Series: Oxford Chemistry Primers
  • Publisher: Oxford University Press
  • Publication date: 2019-06-18
  • Number of pages: 192
  • ISBN: 9780198789048
  • Subject: Spectral analysis, spectrochemistry, mass spectrometry
  • BISAC: SCIENCE / Chemistry / Analytic

About the author

Professor James McCullagh is affiliated with the University of Oxford and leads the Mass Spectrometry Research Facility. He develops and applies innovative mass spectrometric techniques in chemistry, biology, and medicine. His research focuses, among other things, on metabolomics and the role of small molecules in health and disease.

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