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It depends on whether you are a chemistry major or a non-chemistry major.
Non-chemistry majors study some of the most basic aspects of chemistry, including chemical thermodynamics, chemical kinetics, atomic structure, molecular structure, solution (ionization equilibrium, precipitation-dissolution equilibrium, etc.).
Chemistry majors should take inorganic, analytical, organic, physicochemical (collectively known as the four major chemistry), polymer chemistry, biochemistry, structural chemistry and other professional courses.
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1. Inorganic chemistry courses.
Inorganic and analytical chemistry.
Bioinorganic Chemistry.
Inorganic Chemistry A and B.
Intermediate Inorganic Chemistry.
2. Organic chemistry courses.
Organic chemistry. Organic Chemistry Forma.
Intermediate Organic Chemistry.
Organic synthesis. Spectral analysis.
Pesticide chemistry. Polymer Chemistry.
Medicinal Chemistry. 3. Analytical chemistry courses.
Analytical chemistry. Instrumental analysis.
Modern instrumental analysis.
Modern separation analysis.
Environmental Chemistry. 4. Physical chemistry courses.
Physical chemistry. Physicochemical A.
Special Topics in Physical Chemistry.
Applied electrochemistry.
Catalytic Principles and Technologies.
Integrated circuits and processes.
Computational Chemistry. Green Chemistry.
Materials Chemistry. Structural Chemistry.
Fundamentals of genealogy. 5. General chemistry courses.
General Chemistry. General Chemistry (H).
Chemistry and Human Civilization.
Engineering Chemistry. Introduction to Modern Chemistry.
Introduction to Chemical Biology.
Inorganic Choice. Chemoinformatics.
Wonderful molecules and scientific innovation.
Principles of chemistry. University Chemistry.
6. Basic chemistry laboratory courses.
Basic Chemistry Experiments (i), (ii), (iii).
University Chemistry Experiment (G).
University Chemistry Experiment (O).
7. Intermediate chemistry laboratory courses.
Intermediate Chemistry Experiments (I) and (ii).
University Chemistry Experiment (a).
University Chemistry Experiment (P).
8. Comprehensive chemistry laboratory courses.
Integrated Chemistry Experiment (A) (B).
Comprehensive skills training in chemical experiments.
Chemistry Experiments A, B, and C.
9. Chemical biology laboratory courses.
Chemical biology experiments.
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The main courses studied in the chemistry major at the university are as follows:
Inorganic Chemistry, Analytical Chemistry (including instrumental analysis), Organic Chemistry, Physical Chemistry (including Structural Chemistry), Fundamentals of Chemical Engineering, etc.
The core knowledge to be learned by chemistry students includes: the structure level of substances, the morphological and structure-activity relationships, the chemical bonds and the interaction between molecules, the direction, limit, rate and mechanism of chemical reactions, the composition and structure of inorganic and organic substances, synthesis and separation, analysis and characterization, reaction and transformation, properties and applications, the basic operation and technology of chemical experiments, the principles and applications of common instruments and equipment, and the acquisition of chemical information.
Career direction of chemistry major
Graduates majoring in chemistry can find ideal jobs in industries such as daily chemicals, clothing, petrochemicals, food, manufacturing and medicine, and environmental protection. Chemical analyst, raw material inspection, air quality inspection technical engineer, enterprise engineering technician, pharmaceutical worker.
It can also be engaged in technology development, product development, production management, production supervision, environmental monitoring, quality inspection, technical services and other work in chemical-related enterprises and institutions, trading companies. You can also go to related industries to engage in chemical application research and development, safety management, quality testing and other work.
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The main courses of chemistry major: Inorganic Chemistry, Organic Chemistry, Fundamentals of Chemical Engineering, Analytical Chemistry (including instrumental analysis), Physical Chemistry (including structural chemistry), Principles of General Chemistry, Fundamentals of Chemical Engineering, Chemical Informatics, Biochemistry, Polymer Chemistry, Basic Chemistry Experiments, Biochemistry Experiments, Basic Chemical Engineering Experiments, Comprehensive Chemistry Experiments, Research Design Experiments, etc.
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Answer: Basic chemistry is mainly inorganic chemistry, organic chemistry, physical chemistry, analytical chemistry, complex chemistry, and polymer chemistry.
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Briefly talk about the grade distribution of the main courses of the chemistry major, of course, each school is different, this is just a way of training.
First semester of freshman year: Advanced Mathematics 1 College English 1 Reflection College Physical Education 1 Inorganic Chemistry 1 Inorganic Chemistry Laboratory 1
Second semester: Advanced Mathematics 2 College English 2 Modern History Situation and Policy College Physical Education 2 Inorganic Chemistry 2 College Physics Inorganic Chemistry Laboratory 2
First semester of sophomore year: Ma Yuan Chemical Analysis College Physical Education 3 Organic Chemistry 1 Chemical Analysis Experiment Organic Chemistry Experiment 1
Second semester of sophomore year: Instrumental Analysis Organic Chemistry 2 Physical Chemistry 1 College Physical Education 4 Instrumental Analysis Experiment Organic Chemistry Experiment 2
First semester of junior year: Principles of Chemical Engineering, Structural Chemistry, Physical Chemistry 2, Physical Chemistry Experiments, Principles of Chemical Engineering Experiments.
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For the chemistry major in college, I think it should be chemical analysis, through hands-on experiments or training university teachers or something.
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What is better to study chemistry in college? I feel that I can learn those chemistry or applied chemistry, and this kind of employment channel is broader.
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When I majored in chemistry in college, I think I was engaged in chemical analysis, and I usually worked in the laboratory after graduation.
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The basic knowledge of chemistry in college is as follows:1. The melting and boiling point of homogeneous metals decreases from top to bottom, and the melting and boiling point of homogeneous nonmetals increases from top to bottom.
2. The melting and boiling point of hydrides of the same group of non-metallic elements increases from top to bottom, and contains hydrogen bonds.
NH3, H20, HF abnormalities.
3. The melting of atomic crystals only destroys covalent bonds.
The melting of ionic crystals only destroys ionic bonds, and the melting of molecular crystals only destroys intermolecular forces.
4. The chemical reaction carried out in the open container is the open body pre-ignition system. Because the reaction system and the environment have both material exchange and energy and liquid quantity exchange.
5. The environment is a part outside the system. The environment usually refers to a limited part of the system that interacts with the system.
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The basic knowledge of chemistry in college includes inorganic chemistry, analytical chemistry (including instrumental analysis), organic chemistry, physical chemistry (including structural chemistry), and chemical engineering foundations.
The contents include atomic structure, molecular structure, complex structure, aggregation state of matter, chemical thermodynamics, chemical kinetics, chemical equilibrium, proton acid-base balance in solution, electron acid-base balance in solution, electrochemical basis and redox balance, as well as elemental chemistry and its biological effects.
Study Requirements for College Chemistry:
1. Master the basic theories and basic knowledge of mathematics and physics.
2. Master the basic knowledge, basic principles and basic experimental skills of inorganic chemistry, analytical chemistry (including instrumental analysis), organic chemistry, physical chemistry (including structural chemistry) and chemical engineering.
3. Understand the general principles and knowledge of similar majors.
4. Understand the national policies on scientific research, chemistry-related industries, domestic and foreign laws and regulations on intellectual property rights, etc.
5. Understand the theoretical frontiers, application prospects and latest development trends in some fields of chemistry, as well as the development status of chemistry-related industries.
6. Master the basic methods of data inquiry, literature retrieval and the use of modern information technology to obtain relevant information in Chinese and foreign languages; Have the ability to have a certain experimental design, create experimental conditions, summarize, reason, analyze experimental results, write theories, and participate in academic exchanges.
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1. The main courses of chemistry in the direction of inorganic chemistry, analytical chemistry, organic chemistry, physical chemistry, polymer chemistry and physics are: inorganic chemistry and experiment, analytical chemistry and experiment, organic chemistry and experiment, physical chemistry and experiment, structural chemistry, and instrumental analysis.
2. The main courses of applied chemistry are: theoretical chemistry, principles of chemical engineering, and basic chemistry experiments.
1. Basic chemistry experiments.
2. Comprehensive chemical experiments, modern separation chemistry, chemical process design, structural chemistry, organic synthesis design, chemical instrument automation, industrial catalyst design, open experiments, innovative experiments, inorganic chemistry, analytical chemistry, instrumental analysis, organic chemistry, physical chemistry, structural chemistry, chemical engineering foundation, etc.
3. Basic courses: advanced mathematics
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Compulsory courses: Inorganic Chemistry, Analytical Chemistry (including instrumental analysis), Organic Chemistry, Physical Chemistry (including Structural Chemistry), Fundamentals of Chemical Engineering, etc.
Practical teaching: the main practical teaching links: including production practice, graduation**, etc., generally arranged for 10-20 weeks.
Chemistry is a university major, which cultivates senior professionals who have the basic knowledge, basic theories and basic skills of chemistry, and can engage in scientific research, teaching technology and related management in chemistry and chemistry-related science and technology and other fields.
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This major cultivates senior professionals who have the basic knowledge, basic theories, basic skills and related engineering and technical knowledge and strong experimental skills in chemistry, have scientific thinking and scientific experiment training in basic research and applied basic research in chemistry, and can engage in scientific research, teaching and management in scientific research institutions, colleges and universities, enterprises and institutions.