Petrucci's General Chemistry: Principles and Modern Applications, 12th edition

Published by Pearson (July 25, 2023) © 2023

  • Ralph H. Petrucci California State University, San Bernardino
  • F Geoffrey Herring University of British Columbia
  • Jeffry D. Madura Duquesne University
  • Carey Bissonnette University of Waterloo

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The most trusted general chemistry text, Petrucci's General Chemistry: Principles and Modern Applications is recognized for its superior problems, lucid writing, precision of argument, and meticulous treatment of the subject. The text offers enhanced hallmark features, new innovations, and revised discussions that respond to key market needs for the detailed and modern treatment of chemistry, embracing the power of visual learning and conquering the challenges of effective problem solving and assessment. In every explanation, illustration, and media resource, students and instructors benefit from the care and craftsmanship of an extraordinarily talented and collaborative authorial team who shared a wealth of experience from regularly teaching a general chemistry course for majors as well as non-majors.

Hallmark features of this title

  • Concept Assessment questions (many of which are qualitative) are distributed throughout the body of the chapters. They enable students to test their understanding of basic concepts before proceeding further. Full solutions are provided near the back of the book in Appendix G.
  • Are You Wondering? boxes pose and answer good questions that students often ask. Some are designed to help students avoid common misconceptions; others provide analogies or alternate explanations of a concept; and still others address apparent inconsistencies in the material that the students are learning. These topics can be assigned or omitted at the instructor's discretion.
  • Worked-out examples throughout the text illustrate how to apply the concepts. In several instances, a drawing or photograph is included to help students visualize what is going on in the problem. Importantly, all these examples follow a tripartite structure of Analyze­–Solve–Assess to encourage students to adopt a logical approach to problem solving.

New and updated features of this title

  • Based on suggestions from subject experts, the table of contents has been reorganized to improve flow.
  • Twenty new profiles of eminent scientists cover their notable contributions and contextualize concepts discussed in the surrounding text.
  • The text has been updated to reflect the latest revisions to the periodic table.
  • The artwork has been updated with many new or modified illustrations and photographs.
  • The overall design of the text has been updated and enhanced for a more modern, accessible layout.
  • The end-of-chapter assessment materials have been refreshed, with over 400 of them revised or updated.
  • The Item Library in MasteringTM Chemistry has been expanded to offer greater coverage of the end-of-chapter assessment materials.
  1. Matter: Its Properties and Measurement
  2. Atoms and the Atomic Theory
  3. Chemical Compounds
  4. Chemical Reactions
  5. Introduction to Reactions in Aqueous Solutions
  6. Gases
  7. Thermochemistry
  8. Electrons in Atoms
  9. The Periodic Table and Some Atomic Properties
  10. Chemical Bonding I: Basic Concepts
  11. Chemical Bonding II: Valence Bond and Molecular Orbital Theories
  12. Intermolecular Forces: Liquids and Solids
  13. Spontaneous Change: Entropy and Gibbs Energy
  14. Solutions and Their Physical Properties
  15. Chemical Kinetics
  16. Principles of Chemical Equilibrium
  17. Acids and Bases
  18. Additional Aspects of Acid–Base Equilibria
  19. Solubility and Complex-Ion Equilibria
  20. Electrochemistry
  21. Chemistry of the Main-Group Elements I: Groups 1, 2, 13, and 14
  22. Chemistry of the Main-Group Elements II: Groups 18, 17, 16, 15, and Hydrogen
  23. The Transition Elements
  24. Complex Ions and Coordination Compounds
  25. Nuclear Chemistry
  26. Structure of Organic Compounds
  27. Reactions of Organic Compounds
  28. Chemistry of the Living State (online)

Ralph Petrucci received his B.S. in Chemistry from Union College, Schenectady, NY, and his Ph.D. from the University of Wisconsin–Madison. Following ten years of teaching, research, consulting, and directing the NSF Institutes for Secondary School Science Teachers at Case Western Reserve University, Cleveland, OH, Dr. Petrucci joined the planning staff of the new California State University campus at San Bernardino in 1964. There, in addition to his faculty appointment, he served as Chair of the Natural Sciences Division and Dean of Academic Planning. Dr. Petrucci also coauthored General Chemistry with John W. Hill, Terry W. McCreary, and Scott S. Perry.

Geoff Herring received both his B.Sc. and his Ph.D. in Physical Chemistry from the University of London. He was a Professor Emeritus at the Department of Chemistry of the University of British Columbia, Vancouver. Dr. Herring had research interests in biophysical chemistry and published over 100 papers in physical chemistry and chemical physics. He also pursued studies in the use of information technology and interactive engagement methods in teaching general chemistry with a view to improve student comprehension and learning. Dr. Herring taught chemistry from undergraduate to graduate levels for over 30 years and was the recipient of the Killam Prize for Excellence in Teaching twice.

Jeffry D. Madura was a Professor and the Lambert F. Minucci Endowed Chair in Computational Sciences and Engineering at the Department of Chemistry and Biochemistry of Duquesne University located in Pittsburgh, PA. He earned a B.A. from Thiel College in 1980 and a Ph.D. in Physical Chemistry from Purdue University in 1985 under the direction of Professor William L. Jorgensen. The Ph.D. was followed by a postdoctoral fellowship in computational biophysics with Professor J. Andrew McCammon at the University of Houston. Dr. Madura's research interests were in computational chemistry and biophysics. He published more than 100 peer-reviewed papers in physical chemistry and chemical physics. Dr. Madura taught chemistry to undergraduate and graduate students for over 24 years and was the recipient of a Dreyfus Teacher-Scholar Award. He also received the 2014 American Chemical Society Pittsburgh Section Award and the Bayer School of Natural and Environmental Sciences and the Duquesne University Presidential Award for Excellence in Scholarship in 2007. Dr. Madura was an ACS Fellow and a Fellow of the Royal Society of Chemistry. He also worked with high school students and teachers as part of the ACS Science Coaches program.

Carey Bissonnette was Continuing Lecturer at the Department of Chemistry of the University of Waterloo, Ontario. He received his B.Sc. from the University of Waterloo in 1989 and his Ph.D. in 1993 from the University of Cambridge in England. His research interests were in the development of methods for modeling dynamical processes of polyatomic molecules in the gas phase. He won several awards for excellence in teaching, including the University of Waterloo's Distinguished Teacher Award in 2005. Dr. Bissonnette made extensive use of technology in both the classroom and the laboratory to create an interactive environment for his students to learn and explore. For several years, he was actively engaged in undergraduate curriculum development, high-school liaison activities, and the coordination of the university's high-school chemistry contests written each year by students around the world.

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