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Peterson's(R) Graduate Programs in the Biological/Biomedical Sciences & Health-Related Medical Professions 2021 contains profiles of more than 6,500 graduate programs at over 1,000 institutions in the biological/biomedical sciences and health-related medical professions. Informative data profiles are included for these graduate programs in every available discipline in the biological and biomedical sciences and health-related medical professions, including facts and figures on accreditation, degree requirements, application deadlines and contact information, financial support, faculty, and student body profiles. Two-page in-depth descriptions, written by featured institutions, offer complete details on specific graduate program, school, or department as well as information on faculty research and the college or university. Comprehensive directories list programs in this volume, as well as others in the graduate series.
Practical Computing for Biologists shows you how to use many freely available computing tools to work more powerfully and effectively. The book was born out of the authors' own experience in developing tools for their research and helping other biologists with their computational problems. Many of the techniques are relevant to molecular bioinformatics but the scope of the book is much broader, covering topics and techniques that are applicable to a range of scientific endeavours. Twenty-two chapters organized into six parts address the following topics (and more; see Contents): • Searching with regular expressions • The Unix command line • Python programming and debugging • Creating and editing graphics • Databases • Performing analyses on remote servers • Working with electronics While the main narrative focuses on Mac OS X, most of the concepts and examples apply to any operating system. Where there are differences for Windows and Linux users, parallel instructions are provided in the margin and in an appendix. The book is designed to be used as a self-guided resource for researchers, a companion book in a course, or as a primary textbook. Practical Computing for Biologists will free you from the most frustrating and time-consuming aspects of data processing so you can focus on the pleasures of scientific inquiry.
The study of the biology of tumours has grown to become markedly interdisciplinary, involving chemists, statisticians, epidemiologists, mathematicians, bioinformaticians, and computer scientists alongside biologists, geneticists, and clinicians. The Oxford Textbook of Cancer Biology brings together the most up-to-date developments from different branches of research into one coherent volume, providing a comprehensive and current account of this rapidly evolving field. Structured in eight sections, the book starts with a review of the development and biology of multi-cellular organisms, how they maintain a healthy homeostasis in an individual, and a description of the molecular basis of cancer development. The book then illustrates, as once cells become neoplastic, their signalling network is altered and pathological behaviour follows. It explores the changes that cancer cells can induce in nearby normal tissue, the new relationship established between them and the stroma, and the interaction between the immune system and tumour growth. The authors illustrate the contribution provided by high throughput techniques to map cancer at different levels, from genomic sequencing to cellular metabolic functions, and how information technology, with its vast amounts of data, is integrated with traditional cell biology to provide a global view of the disease. The effect of the different types of treatments on the biology of the neoplastic cells are explored to understand on the one side, why some treatments succeed, and on the other, how they can affect the biology of resistant and recurrent disease. The book concludes by summarizing what we know to date about cancer, and in what direction our understanding of cancer is moving. Edited by leading authorities in the field with an international team of contributors, this book is an essential resource for scholars and professionals working in the wide variety of sub-disciplines that make up today's cancer research and treatment community. It is written not only for consultation, but also for easy cover-to-cover reading.
Is graduate school right for you? Should you get a master's or a Ph.D.? How can you choose the best possible school? This classic guide helps students answer these vital questions and much more. It will also help graduate students finish in less time, for less money, and with less trouble. Based on interviews with career counselors, graduate students, and professors, Getting What You Came For is packed with real-life experiences. It has all the advice a student will need not only to survive but to thrive in graduate school, including: instructions on applying to school and for financial aid; how to excel on qualifying exams; how to manage academic politics—including hostile professors; and how to write and defend a top-notch thesis. Most important, it shows you how to land a job when you graduate.
Proceedings of the 2019 International Conference on Bioinformatics & Computational Biology (BIOCOMP'19) held July 29th - August 1st, 2019 in Las Vegas, Nevada.
Describes and integrates the techniques of many advances in both chromatographic and mass spectrometric technologies. This book also covers various biophysical applications, such as H/D exchange for study of conformations, protein-protein and protein-metal and ligand interactions. It also describes atto-to-zepto-mole quantitation of 14C and 3H.
Peterson's(R) Graduate Programs in the Biological/Biomedical Sciences & Health-Related Medical Professions 2020 contains profiles of more than 6,600 graduate programs at over 1,200 institutions in the biological/biomedical sciences and health-related medical professions. Informative data profiles are included for these graduate programs in every available discipline in the biological and biomedical sciences and health-related medical professions, including facts and figures on accreditation, degree requirements, application deadlines and contact information, financial support, faculty, and student body profiles. Two-page in-depth descriptions, written by featured institutions, offer complete details on specific graduate program, school, or department as well as information on faculty research and the college or university. Comprehensive directories list programs in this volume, as well as others in the graduate series.
Are you thinking about a career in wildlife biology? Confused about the steps you need to take? This is the book for you! With nearly two decades of experience, Dr. Stephanie Schuttler shares her journey of becoming a wildlife biologist, what she has learned about this field, and provides advice for how you can become competitive for jobs. Wildlife biology careers have changed tremendously over the few decades. A lot of advice students receive or find on the Internet is outdated and no longer applies. With more and more students graduating, the field is more competitive than ever before. Dr. Schuttler has years of experience working in and applying for jobs in research, education, and science communication. In this book, she shares her personal journey of how she became a wildlife biologist, detailed accounts of working in museums, zoos, in academia, and for the government, what has made her competitive for jobs, and why she didn't get specific jobs despite having all of the qualifications and years of pertinent experience. In addition to her own story, she goes over the types of career opportunities available to wildlife biologists, where wildlife biologists work, what educational requirements are needed, and what else you need to become competitive for jobs in this field. Although tailored for jobs wildlife biology, this book will also help those interested in other natural history fields. Reverse engineer your career by learning from Dr. Schuttler's journey to find your dream job.
This is one of three short booklets designed to be given to graduate students as they begin their studies. These booklets explain the purposes of the dissertation and the criteria by which it will be assessed. They help students understand the context of their course work; the need to take an active role in shaping their studies; and the importance of thinking ahead about the components of the dissertation and the quality of scholarship they will need to demonstrate.These booklets are intended to support the dissertation research and writing process by providing faculty and advisors with guidelines for setting clear expectations for student performance, and with a model for helping students produce the desired quality of work. They encourage dialogue between faculty and students about the quality of the components of their dissertation project. They include rubrics that students can use to self-assess their work and that can aid faculty in providing focused feedback.Setting explicit targets and benchmarks of excellence of the sort advocated in these booklets will enable departments and universities to respond to demands for accountability with clear criteria for, and evidence of, success; and will raise the overall quality of student performance.
Peterson's Graduate Programs in the Biological/Biomedical Sciences & Health-Related Medical Professions 2014 contains comprehensive profiles of nearly 6,800 graduate programs in disciplines such as, allied health, biological & biomedical sciences, biophysics, cell, molecular, & structural biology, microbiological sciences, neuroscience & neurobiology, nursing, pharmacy & pharmaceutical sciences, physiology, public health, and more. Up-to-date data, collected through Peterson's Annual Survey of Graduate and Professional Institutions, provides valuable information on degree offerings, professional accreditation, jointly offered degrees, part-time and evening/weekend programs, postbaccalaureate distance degrees, faculty, students, requirements, expenses, financial support, faculty research, and unit head and application contact information. There are helpful links to in-depth descriptions about a specific graduate program or department, faculty members and their research, and more. There are also valuable articles on financial assistance, the graduate admissions process, advice for international and minority students, and facts about accreditation, with a current list of accrediting agencies.