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General Chemistry: Principles, Patterns, and Applications
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The overall goal of the authors with General Chemistry: Principles, Patterns, and Applications was to produce a text that introduces the students to the relevance and excitement of chemistry.Although much of first-year chemistry is taught as a service course, Bruce and Patricia feel there is no reason that the intrinsic excitement and potential of chemistry cannot be the focal point of the text and the course. So, they emphasize the positive aspects of chemistry and its relationship to students? lives, which requires bringing in applications early and often. In addition, the authors feel that many first year chemistry students have an enthusiasm for biologically and medically relevant topics, so they use an integrated approach in their text that includes explicit discussions of biological and environmental applications of chemistry.

Subject:
Chemistry
Physical Science
Material Type:
Textbook
Provider:
The Saylor Foundation
Provider Set:
Saylor Textbooks
Author:
Bruce Averill
Patricia Eldredge
Date Added:
01/01/2011
General Chemistry for Gee-Gees
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This book was designed for students enrolled in CHM1311 Principles of Chemistry at the University of Ottawa.

Subject:
Chemistry
Physical Science
Material Type:
Textbook
Provider:
eCampusOntario
Author:
Jessica Thomas
Kathy-Sarah Focsaneanu
Kevin Roy
Madhi Zeghal
Date Added:
06/28/2023
How to be a Successful Organic Chemist
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How to be a successful organic chemist is meant as an introductory text for undergraduates taking organic chemistry teaching labs. The text is a clear and practical introduction to safety, chemical handling, organic chemistry techniques, and lab reports.

Subject:
Chemistry
Physical Science
Material Type:
Textbook
Provider:
LibreTexts
Author:
Alexander Sandtorv
Date Added:
06/28/2023
Inorganic Chemistry
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CC BY-NC-SA
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Inorganic chemistry is concerned with the properties and reactivity of all chemical elements. Advanced interests focus on understanding the role of metals in biology and the environment, the design and properties of materials for energy and information technology, fundamental studies on the reactivity of main group and transition elements, and nanotechnology. Synthetic efforts are directed at hydrogen storage materials and thermoelectrics, catalysts for solar hydrogen generation, fullerenes and metal porphyrins, metal clusters and compounds with element-element bonds, as well as nanowires and nanoparticles.

Subject:
Chemistry
Physical Science
Material Type:
Textbook
Provider:
LibreTexts
Date Added:
06/28/2023
Introductory Chemistry
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CC BY-NC-SA
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David W. Ball of Cleveland State University brings his new survey of general chemistry text, Introductory Chemistry, to the market with a fresh theme that will be sure to hold student interest: "Chemistry is Everywhere." Introductory Chemistry is intended for a one-semester introductory or preparatory chemistry course. Throughout the chapters, David presents two features that reinforce the theme of the textbook, that chemistry is everywhere.The first is the boxed feature titled, appropriately, “Chemistry is Everywhere”. This feature takes a topic of the chapter and demonstrates how this topic shows up in everyday life. In the introductory chapter, “Chemistry is Everywhere” focuses on the personal hygiene products that students may use every morning: toothpaste, soap, shampoo among others. These products are chemicals, aren’t they? This book explores some of the chemical reactions like the ones that give students clean and healthy teeth, and shiny hair. This feature makes it clear to students that chemistry is, indeed, everywhere, and it will promote student retention in what is sometimes considered an intimidating course.The second boxed feature focuses on chemistry that students likely indulge in every day: eating and drinking. In the “Food and Drink App”, David discusses how the chemistry of the chapter applies to things that students eat and drink every day. Carbonated beverages depend on the behavior of gases, foods contain acids and bases, and everyone actually eats certain rocks. (Yikes!) Cooking, eating, drinking, metabolism – all chemical processes students are involved with all the time. These features allow students to see the things we interact with every day in a new light – as chemistry.Just like many of the one-semester chemistry books you may be used to, each section in David Ball's <="" em=""> starts with one or more Learning Objectives, which list the main points of the section. Each section ends with Key Takeaways, which are reviews of the main points of the section. Each chapter is full of examples to illustrate the key points of the materials, and each example is followed with a similar “Test Yourself” exercise to see if the student understands the concept. Each section ends with its own set of paired exercises to practice the material from that section, and each chapter ends with a section of “Additional Exercises” that are more challenging or require multiple steps or skills to answer.David took the time to treat mathematical problems in Introductory Chemistry one of two ways, either as a conversion-factor problem or as a formula problem. David believes having two basic mathematical approaches (converting and formulas) allows the text to focus on the logic of the approach and not tricks or shortcuts; which speaks to the final point about Introductory Chemistry.You'll notice that David took no shortcuts with the material in this text, his inviting writing style, concise approach, consistent presentation, and interesting pedagogy have given it some of the best peer reviews we've seen at Flat World. So, order a desk copy or dive in now to see for yourself.

Subject:
Chemistry
Physical Science
Material Type:
Textbook
Provider:
The Saylor Foundation
Provider Set:
Saylor Textbooks
Author:
David W. Ball
Date Added:
01/01/2011
Introductory Chemistry - 1st Canadian Edition
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CC BY-NC-SA
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The goal of this textbook is not to make you an expert. True expertise in any field is a years-long endeavor. Here I will survey some of the basic topics of chemistry. This survey should give you enough knowledge to appreciate the impact of chemistry in everyday life and, if necessary, prepare you for additional instruction in chemistry.

Subject:
Chemistry
Physical Science
Material Type:
Textbook
Provider:
BCcampus
Author:
David W. Ball
Jessie A. Key
Date Added:
11/18/2021
Organic Chemistry
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CC BY-NC-SA
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Organic Chemistry research involves the synthesis of organic molecules and the study of their reaction paths, interactions, and applications. Advanced interests include diverse topics such as the development of new synthetic methods for the assembly of complex organic molecules and polymeric materials, organometallic catalysis, organocatalysis, the synthesis of natural and non-natural products with unique biological and physical properties, structure and mechanistic analysis, natural product biosynthesis, theoretical chemistry and molecular modeling, diversity-oriented synthesis, and carbohydrate synthesis.

Subject:
Chemistry
Physical Science
Material Type:
Textbook
Provider:
LibreTexts
Date Added:
02/25/2020
Organic Chemistry
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CC BY-NC-SA
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Organic Chemistry is renowned as the most clearly written book available for organic chemistry. In John McMurry's words, "I wrote this book because I love writing. I get great pleasure and satisfaction from taking a complicated subject, turning it around until I see it clearly from a new angle, and then explaining it in simple words." In Organic Chemistry: A Tenth Edition from OpenStax, McMurry continues this tradition while updating scientific discoveries, highlighting new applications, scrutinizing every piece of art, and providing example problems to assist students. Organic Chemistry: A Tenth Edition continues to meet the scope and sequence of a two-semester organic chemistry course that follows a functional group approach. A highlighted list of changes along with a detailed table of contents and ancillary descriptions can be found on the Instructor and Student resources sections.

Table of Contents:
Chapter 1 Structure and Bonding
Chapter 2 Polar Covalent Bonds; Acids and Bases
Chapter 3 Organic Compounds: Alkanes and Their Stereochemistry
Chapter 4 Organic Compounds: Cycloalkanes and Their Stereochemistry
Chapter 5 Stereochemistry at Tetrahedral Centers
Chapter 6 An Overview of Organic Reactions
Chapter 7 Alkenes: Structure and Reactivity
Chapter 8 Alkenes: Reactions and Synthesis
Chapter 9 Alkynes: An Introduction to Organic Synthesis
Chapter 10 Organohalides
Chapter 11 Reactions of Alkyl Halides: Nucleophilic Substitutions and Eliminations
Chapter 12 Structure Determination: Mass Spectrometry and Infrared Spectroscopy
Chapter 13 Structure Determination: Nuclear Magnetic Resonance Spectroscopy
Chapter 14 Conjugated Compounds and Ultraviolet Spectroscopy
Chapter 15 Benzene and Aromaticity
Chapter 16 Chemistry of Benzene: Electrophilic Aromatic Substitution
Chapter 17 Alcohols and Phenols
Chapter 18 Ethers and Epoxides; Thiols and Sulfides
Chapter 19 Aldehydes and Ketones: Nucleophilic Addition Reactions
Chapter 20 Carboxylic Acids and Nitriles
Chapter 21 Carboxylic Acid Derivatives: Nucleophilic Acyl Substitution Reactions
Chapter 22 Carbonyl Alpha-Substitution Reactions
Chapter 23 Carbonyl Condensation Reactions
Chapter 24 Amines and Heterocycles
Chapter 25 Biomolecules: Carbohydrates
Chapter 26 Biomolecules: Amino Acids, Peptides, and Proteins
Chapter 27 Biomolecules: Lipids
Chapter 28 Biomolecules: Nucleic Acids
Chapter 29 The Organic Chemistry of Metabolic Pathways
Chapter 30 Orbitals and Organic Chemistry: Pericyclic Reactions
Chapter 31 Synthetic Polymers

Subject:
Chemistry
Physical Science
Material Type:
Textbook
Provider:
Rice University
Provider Set:
OpenStax College
Author:
John McMurry
Date Added:
02/08/2024
Organic Chemistry I
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This is the first course taken in a two sequence Organic Chemistry Course for science majors.

This course examines the behavior of hydrocarbons and their derivatives. Topics covered include alkanes, halides, alcohols, alkynes and stereochemistry.

Upon completion of this course the student will be able to perform the following: (1) Name organic compounds using both the IUPAC and Common System, (2) Determine the Stereochemistry of a compound, (3) Predict the products that will be formed from specific reactions, (4) Predict how changes in the structure of a compound can influence physical properties and reactivity, and (5) Understand the Importance of Mechanisms.

Subject:
Chemistry
Physical Science
Material Type:
Full Course
Module
Textbook
Author:
Dr. Connie R. Walton
Dr. Kevin Roberson
Date Added:
12/19/2019
Organic Chemistry I
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CC BY-NC-SA
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An open textbook that is suitable for the first semester of Organic Chemistry. Basic concepts of the structures and reactivities of organic molecules are covered in this open textbook. Besides the fundamental discussions of organic acids-bases, stereochemistry, IR and NMR, this book also includes the topics of substitution and elimination reactions, radical substitution of alkanes, preparation and reactions of alkenes and alkynes.

Subject:
Chemistry
Physical Science
Material Type:
Textbook
Provider:
Kwantlen Polytechnic University
Author:
Xin Liu
Date Added:
02/23/2022
Organic Chemistry I
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CC BY-NC-SA
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The organic chemistry course is organized as three modules: I. Molecular Architecture II. Molecular Transformations: Introduction to Organic Synthesis and Reaction Mechanisms III. Chemistry of

Subject:
Chemistry
Physical Science
Material Type:
Textbook
Provider:
LibreTexts
Author:
Sergio Cortes
Date Added:
06/28/2023
Organic Chemistry II
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CC BY-NC-SA
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This course is designed for students majoring in a STEM area. It is the second sequence organic chemistry course.

This course examines the behavior of hydrocarbons and their derivatives. Topics covered include alcohols, alkynes, aldehydes, ketones, carboxylic acids, carboxylic acid derivatives, amines, and aromatic compounds.

Upon completion of this course the student will be able to perform the following: (1) Name organic compounds using both the IUPAC and Common System, (2) Determine the Stereochemistry of a compound, (3) Predict the major and minor products that will be formed from specific reactions, (4) Predict how modifications in chemical structure, including stereochemistry, can drastically change the physical and/or chemical behavior of compounds, and (5) Provide the mechanism for specific types of reactions.

Subject:
Chemistry
Physical Science
Material Type:
Full Course
Module
Textbook
Author:
Dr. Connie R. walton
Dr. Kevin Roberson
Date Added:
12/19/2019
Physical Chemistry
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CC BY-NC-SA
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Physical Chemistry is the application of physical principles and measurements to understand the properties of matter, as well as for the development of new technologies for the environment, energy and medicine. Advanced Physical Chemistry topics include different spectroscopic methods (Raman, ultrafast and mass spectroscopy, nuclear magnetic and electron paramagnetic resonance, x-ray absorption and atomic force microscopy) as well as theoretical and computational tools to provide atomic-level understanding for applications such as: nanodevices for bio-detection and receptors, interfacial chemistry of catalysis and implants, electron and proton transfer, protein function, photosynthesis and airborne particles in the atmosphere.

Subject:
Chemistry
Physical Science
Material Type:
Textbook
Provider:
LibreTexts
Date Added:
06/28/2023
SCC: Chem 309 - General, Organic and Biochemistry (Bennett)
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CC BY-NC-SA
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This course is an intensive survey of general, organic, and biological chemistry specifically designed for nursing majors and other health related fields. Topics include general chemistry, organic chemistry, and biological chemistry as applied to the chemistry of the human body.

Subject:
Chemistry
Physical Science
Material Type:
Full Course
Provider:
LibreTexts
Author:
Diane Bennett
Date Added:
01/16/2020
UCD Chem 110A: Physical Chemistry I (Larsen)
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This text focuses on introducing students to the postulates and general principles of quantum mechanics. Approximations based on variational method and time independent perturbation theory. Application to harmonic oscillator, rigid rotor, one-electron and many-electron atoms, and homo-and hetero-nuclear diatomic molecules.

Subject:
Chemistry
Physical Science
Material Type:
Textbook
Provider:
LibreTexts
Author:
Delmar Larsen
Date Added:
01/10/2020