Academic Year |
2024Year |
School/Graduate School |
School of Science |
Lecture Code |
HJ500000 |
Subject Classification |
Specialized Education |
Subject Name |
基礎化学A |
Subject Name (Katakana) |
キソカガクA |
Subject Name in English |
Basic Chemistry A |
Instructor |
INOKUCHI YOSHIYA |
Instructor (Katakana) |
イノクチ ヨシヤ |
Campus |
Higashi-Hiroshima |
Semester/Term |
1st-Year, First Semester, 1Term |
Days, Periods, and Classrooms |
(1T) Thur9-10,Fri3-4:SCI E002 AV |
Lesson Style |
Lecture |
Lesson Style (More Details) |
|
Lecture and power point, short test, and examination |
Credits |
2.0 |
Class Hours/Week |
|
Language of Instruction |
J
:
Japanese |
Course Level |
1
:
Undergraduate Introductory
|
Course Area(Area) |
25
:
Science and Technology |
Course Area(Discipline) |
07
:
Chemistry |
Eligible Students |
Fresheman chemisty students |
Keywords |
Structure of atom, chemical bonding, quantum chemistry |
Special Subject for Teacher Education |
|
Special Subject |
|
Class Status within Educational Program (Applicable only to targeted subjects for undergraduate students) | Chemistry (Knowledge and Understanding) ・To thoroughly understand and learn knowledge of physical chemistry, in particular quantum chemistry. ・Understanding and acquiring logical frameworks and structure of basic studying and knowledge and skills necessary for learning construction. |
---|
Criterion referenced Evaluation (Applicable only to targeted subjects for undergraduate students) | Chemistry (Knowledge and Understanding) ・To thoroughly understand and learn knowledge of physical chemistry, inorganic chemistry and organic chemistry. ・Understanding and acquiring logical frameworks and structure of basic studying and knowledge and skills necessary for learning construction. |
Class Objectives /Class Outline |
Study on fundamental part of chemistry useful for the advanced courses, such as physical chemistry, inorganic chemistry, and organic chemistry. |
Class Schedule |
Explanation of contents in the lecture and basic mathematics Atom models and spectra of hydrogen atom Bohr atom and Bohr hypothesis Particle and wave aspects of photon and electron Wave equations de Broglie relation and Schroedinger equation Hamiltonian and eigenvalue problem Particle in a box Photoabsorption of conjugated polyenes Wavefunctions, Eigenvalues, expectation values Schroedinger equation of 3D systems Hydrogen atom Multielectron atoms Hydrogen molecule ion examination |
Text/Reference Books,etc. |
textbook "Ryoshi Kagaku (量子化学)", Fumitaka Mafune (真船文隆), Kagaku-dojin (化学同人) |
PC or AV used in Class,etc. |
|
(More Details) |
textbook, power point, and resume |
Learning techniques to be incorporated |
|
Suggestions on Preparation and Review |
Need both preparation and review |
Requirements |
|
Grading Method |
reports and examination |
Practical Experience |
|
Summary of Practical Experience and Class Contents based on it |
|
Message |
|
Other |
|
Please fill in the class improvement questionnaire which is carried out on all classes. Instructors will reflect on your feedback and utilize the information for improving their teaching. |