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Introduction to Modern Liquid Chromatography 3e
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Introduction to Modern Liquid Chromatography 3e Hardcover - 2009 - 3rd Edition

by Snyder, Lloyd R./ Kirkland, Joseph J./ Dolan, John W

  • New
  • Hardcover

Description

John Wiley & Sons Inc, 2009. Hardcover. New. 3rd edition. 912 pages. 10.25x7.50x1.75 inches.
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Details

  • Title Introduction to Modern Liquid Chromatography 3e
  • Author Snyder, Lloyd R./ Kirkland, Joseph J./ Dolan, John W
  • Binding Hardcover
  • Edition number 3rd
  • Edition 3
  • Condition New
  • Pages 960
  • Volumes 1
  • Language ENG
  • Publisher John Wiley & Sons Inc
  • Date 2009
  • Features Bibliography, Index, Table of Contents
  • Bookseller's Inventory # x-0470167548
  • ISBN 9780470167540 / 0470167548
  • Weight 3.9 lbs (1.77 kg)
  • Dimensions 10 x 7.1 x 1.9 in (25.40 x 18.03 x 4.83 cm)
  • Library of Congress subjects Liquid chromatography
  • Library of Congress Catalog Number 2009005626
  • Dewey Decimal Code 543.84

From the publisher

Includes index.

From the rear cover

The latest edition of the authoritative reference to HPLC

High-performance liquid chromatography (HPLC) is today the leading technique for chemical analysis and related applications, with an ability to separate, analyze, and/or purify virtually any sample. Snyder and Kirkland's Introduction to Modern Liquid Chromatography has long represented the premier reference to HPLC. This Third Edition, with John Dolan as added coauthor, addresses important improvements in columns and equipment, as well as major advances in our understanding of HPLC separation, our ability to solve problems that were troublesome in the past, and the application of HPLC for new kinds of samples.

This carefully considered Third Edition maintains the strengths of the previous edition while significantly modifying its organization in light of recent research and experience. The text begins by introducing the reader to HPLC, its use in relation to other modern separation techniques, and its history, then leads into such specific topics as:

  • The basis of HPLC separation and the general effects of different experimental conditions

  • Equipment and detection

  • The column--the "heart" of the HPLC system

  • Reversed-phase separation, normal-phase chromatography, gradient elution, two-dimensional separation, and other techniques

  • Computer simulation, qualitative and quantitative analysis, and method validation and quality control

  • The separation of large molecules, including both biological and synthetic polymers

  • Chiral separations, preparative separations, and sample preparation

  • Systematic development of HPLC separations--new to this edition

  • Troubleshooting tricks, techniques, and case studies for both equipment and chromatograms

Designed to fulfill the needs of the full range of HPLC users, from novices to experts, Introduction to Modern Liquid Chromatography, Third Edition offers the most up-to-date, comprehensive, and accessible survey of HPLC methods and applications available.

Media reviews

Citations

  • Choice, 07/01/2010, Page 0
  • Scitech Book News, 03/01/2010, Page 39

About the author

Lloyd R. Snyder, PhD, is a Principal at LC Resources in Walnut Creek, California. He is the author or coauthor of several books including An Introduction to Separation Science, Introduction to Modern Liquid Chromatography, Second Edition, the bestselling Practical HPLC Method Development, Second Edition, and the comprehensive High-Performance Gradient Elution, all published by Wiley.

Joseph J. Kirkland, PhD, is Vice President of Research and Development for Advanced Materials Technology, Inc., and coauthor of Introduction to Modern Liquid Chromatography, Second Edition, Practical HPLC Method Development, Second Edition, and Modern Size-Exclusion Liquid Chromatography, Second Edition, all published by Wiley.

John W. Dolan, PhD, is a Principal at LC Resources. He is author of the popular "LC Troubleshooting" column in LCGC magazine and coauthor with Lloyd Snyder of Troubleshooting LC Systems and High-Performance Gradient Elution.