职称:Associate Professor
单位:China Pharmaceutical Univ.
部门:College of Science
主讲教师:Hong Jin, Dramou Pierre, Wang Yue, Guo Qi, and Li Jiabin
教师团队:共5位
学校: | 中国药科大学 |
开课院系: | 理学院 |
专业大类: | 药学 |
开课专业: | 药学、临床药学 |
课程英文名称: | Inorganic Chemistry |
课程编号: | 1111100016 |
学分: | 4 |
课时: | 68 |
This version was for class of 2019, the updating course for class of 2020 and 2021 is listed below, please visit our updating course here: [Inorganic Chemistry 2021] http://mooc1.chaoxing.com/course/216891573.html Inorganic chemistry is the first chemistry course for the international students of China Pharmaceutical University. It is a degree course taught to the freshmen with the major of pharmacy and clinical pharmacy. It is one of the most fundamental courses for undergraduates in CPU . As the first chemistry course at undergraduate level, the most important task is to let students know the basic vocabulary of chemistry, the fundamental principles of chemical changes, and the elementary theories about matter structures. Three modules are designed in this course. The first one is the fundamental principles of chemical reaction from macroscopic view. This module contains thermochemistry, thermodynamics, chemical kinetics and general knowledge of chemical equilibrium. The second module is the basic theories of matter structures mainly from microscopic view. Many theories about atomic structure, chemical bonding, molecular geometry and intermolecular interactions are introduced in this part. The third module contains specific knowledge about four types of chemical reactions and equilibria, namely acid-base, precipitation, Redox and coordination. There are five excellent members in our teaching group. We will do our best to help all students improving their learning outcomes in our class.
课程章节 | | 文件类型 | | 修改时间 | | 大小 | | 备注 | |
1.1 What is chemistry? |
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1.2 What are banches of chemistry? |
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2020-06-25 | 36.53MB | ||
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1.3 What is inorganic chemistry? |
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1.4 How is the course organized and graded? |
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1.5 How to learn this course effectively? |
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1.6 Pre-test |
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2.1 Introduction |
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2.2 Gases |
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2.3 Solutions |
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2020-05-16 | 12.03MB | ||
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2020-05-16 | 6.21MB | |||
2.4 Learning outcomes and exercises |
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2020-02-29 | 609.23KB | ||
3.1 Energy |
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2020-02-21 | 1.13MB | ||
3.2 The First Law of Thermodynamics |
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2020-06-25 | 19.62MB | ||
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2020-06-25 | 16.06MB | |||
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3.3 Enthalpy |
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3.4 Enthalpies of Reaction |
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3.5 Hess's Law |
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2020-03-09 | 640.50KB | ||
3.6 Enthalpies of Formation |
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3.7 Learning outcomes and exercises |
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4.1 Spontaneous Processes |
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2020-06-25 | 2.05MB | ||
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4.2 Entropy and the Second Law of Thermodynamics |
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4.3 The Molecular Interpretation of Entropy and the Third Law of Thermodynamics |
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2020-03-13 | 1.64MB | ||
4.4 Entropy Changes in Chemical Reactions |
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4.5 Gibbs Free Energy |
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2020-06-25 | 22.05MB | ||
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4.6 Free Energy and Temperature |
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4.7 Learning outcomes and exercises |
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5.1 Factors that Affect Reaction Rates |
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2020-04-08 | 1006.00KB | ||
5.2 Reaction Rates |
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2020-03-02 | 1.98MB | ||
5.3 Concentration and Rate Laws |
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2020-06-25 | 25.89MB | ||
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5.4 Temperature and Rate |
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2020-03-02 | 999.00KB | ||
5.5 Catalysis |
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2020-03-02 | 551.00KB | ||
5.6 Learning outcomes and exercises |
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6.1 The Concept of Equilibrium |
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2020-03-04 | 1.27MB | ||
6.2 The Equilibrium Constant |
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6.3 Understanding and Working with Equilibrium Constants |
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6.4 Calculating Equilibrium Constants |
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6.5 Applications of Equilibrium Constants |
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6.6 Le Châtelier's Principle |
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6.7 Free Energy and the Equilibrium Constants |
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2020-03-04 | 664.50KB | ||
6.8 Learning outcomes and exercises |
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2020-03-27 | 1.09MB | ||
7.1 The Concepts of Acids and Bases |
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2020-05-17 | 273.59MB | ||
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7.2 The Autoionization of Water |
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2020-05-17 | 18.61MB | ||
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7.3 The pH Scale |
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2020-06-25 | 23.49MB | ||
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7.4 Strong Acids and Bases |
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2020-06-25 | 14.46MB | ||
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7.5 Weak Acids and Bases |
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7.6 Relationship between Ka and Kb |
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2020-05-17 | 8.53MB | ||
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7.7 Acid-Base Properties of Salt Solutions |
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2020-02-12 | 1.21MB | ||
7.8 Lewis Acids and Bases |
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2020-05-17 | 9.75MB | ||
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2020-05-17 | 673.40KB | |||
7.9 Learning Outcomes and Exercises |
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2020-03-19 | 1.49MB | ||
8.1 Precipitation Reactions |
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2020-05-17 | 36.98MB | ||
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8.2 Saturated Solutions and Solubility |
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8.3 Solubility Equilibria |
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8.4 Factors Affecting Solubility |
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2020-05-17 | 37.71MB | ||
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8.5 Precipitation and Separation of Ions |
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8.6 Learning Outcomes |
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2020-04-11 | 1.15MB | ||
9.1 The Discovery of Atomic Structure |
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9.2 The Wave Nature of Light |
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9.3 Quantized Energy and Photons |
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9.4 Line Spectra and the Bohr Model |
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2020-05-16 | 1.31MB | ||
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9.5 The Wave Behavior of Matter |
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9.6 Quantum Mechanics and Atomic Orbitals |
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9.7 Many-Electron Atoms and Electron Configuration |
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9.8 The Periodic Table and Periodic Properties of the Elements |
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9.9 Learning Outcomes and Exercises |
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2020-06-25 | 1.24MB | ||
10.1 Ionic Bonding |
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10.2 Covalent Bonding and Orbital Overlap |
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10.3 The VSEPR Model |
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10.4 Hybrid Orbital Theory |
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2020-04-13 | 28.27MB | ||
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2020-04-13 | 1.14MB | |||
10.5 Molecular Orbital Theory |
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2020-05-16 | 48.74MB | ||
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2020-05-16 | 1.04MB | |||
10.6 Intermolecular Forces |
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2020-04-16 | 964.78KB | ||
10.7 Learning Outcomes and Exercises |
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2020-06-25 | 1.43MB | ||
11.1 Redox Reactions and Oxidation Numbers |
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2020-06-26 | 8.00MB | ||
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2020-06-26 | 50.95MB | |||
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2020-06-26 | 64.59MB | |||
11.2 Balancing Redox Equations |
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11.3 Voltaic Cells |
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2020-05-24 | 1.44MB | ||
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11.4 Cell Potentials under Standard Conditions |
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2020-05-26 | 1.59MB | ||
11.5 Free Energy and Equilibrium Constant* |
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2020-05-28 | 506.93KB | ||
11.6 Free Energy and Redox Reactions |
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2020-05-28 | 826.17KB | ||
11.7 Cell Potentials under Nonstandard Conditions |
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2020-05-28 | 1.10MB | ||
11.8 Some Applications of Electrochemistry |
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2020-06-01 | 766.51KB | ||
11.9 Learning Outcomes and Exercises |
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2020-06-28 | 119.76KB | ||
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2020-06-28 | 382.49KB | |||
12.1 The Transition Metals |
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2020-06-08 | 1.10MB | ||
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12.2 Transition-Metal Complexes |
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2020-06-04 | 936.69KB | ||
12.3 Common Ligands in Coordination Chemistry |
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2020-06-05 | 752.34KB | ||
12.4 Nomenclature and isomerism in Coordination Chemistry |
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2020-06-05 | 1.37MB | ||
12.5 Color and Magnetism in Coordination Chemistry |
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2020-06-12 | 866.10KB | ||
12.6 Crystal-Field Theory |
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2020-06-12 | 1.11MB | ||
12.7 Learning Outcomes and Exercises |
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2020-06-28 | 674.68KB | ||
13.2 Gases and Solutions |
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2020-05-17 | 13.81MB | ||
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13.3 Thermodynamics |
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13.4.1 Application of Equilibrium Concentration |
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13.4.2 Le Chatelier's Principle |
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