2024 Introduction to Modern Physics

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Academic unit or major
Undergraduate major in Physics
Instructor(s)
Hirahara Toru  Sekiguchi Kimiko 
Class Format
Lecture    (Face-to-face)
Media-enhanced courses
Day/Period(Room No.)
Wed3-4(M-178(H1101))  
Group
-
Course number
PHY.G230
Credits
1
Academic year
2024
Offered quarter
1Q
Syllabus updated
2024/3/22
Lecture notes updated
-
Language used
Japanese
Access Index

Course description and aims

We show the status of researches of modern physics and explain how it has evolved up to now. First, researches in various fields in modern physics, namely condensed matter physics, particle and nuclear physics, and astrophysics are introduced. Next, students will learn about the "symmetry" that is one of the common theme in various subjects in modern physics.

This course aims to show students how interesting the modern physics is. It also aims to give instructions to the students who are going to select fields of physics which they will study further in details.

Student learning outcomes

The goal is to have an overview of modern physics before the students study individual lectures on specific topics later.
As a common topic in various modern physics, the concept of the "symmetry" is introduced so that the students can gain in-depth understanding of the physics world.

Keywords

Relativity, quantum mechanics, statistical mechanics, modern physics, solid state physics

Competencies that will be developed

Specialist skills Intercultural skills Communication skills Critical thinking skills Practical and/or problem-solving skills

Class flow

Overview on various fields of physics is presented by two faculty members.

Course schedule/Required learning

  Course schedule Required learning
Class 1 (Hirahara) Symmetry breaking in condensed matter physics and quantum phenomena Understand the concept of symmetry breaking in condensed matter physics and emerging quantum phenomena.
Class 2 (Hirahara) Relativistic effects in condensed matter physics and quantum materials Understand the concept of quantum materials in which relativistic effects become important in condensed matter physics.
Class 3 (Hirahara) Application of quantum phenomena in condensed matter physics 1 Understand how quantum phenomena in condensed matter physics can be used in application.
Class 4 (Hirahara) Application of quantum phenomena in condensed matter physics 2 Understand the basic principle of quantum computers.
Class 5 quantum phenomena in particle, nuclear, and astrophysics understand quantum phenomena in particle, nuclear, and astrophysics
Class 6 relativistic effects in particle, nuclear, and astrophysics understand relativistic effects in particle, nuclear, and astrophysics
Class 7 overview of modern particle, nuclear, and astrophysics understand overview of modern particle, nuclear, and astrophysics

Out-of-Class Study Time (Preparation and Review)

To enhance effective learning, students are encouraged to spend approximately 100 minutes preparing for class and another 100 minutes reviewing class content afterwards (including assignments) for each class.
They should do so by referring to textbooks and other course material.

Textbook(s)

Not specified

Reference books, course materials, etc.

To be introduced during the course.

Assessment criteria and methods

Students shall submit some reports.

Related courses

  • LAS.P101 : Fundamentals of Mechanics 1
  • LAS.P102 : Fundamentals of Mechanics 2
  • LAS.P103 : Fundamentals of Electromagnetism 1
  • LAS.P104 : Fundamentals of Electromagnetism 2

Prerequisites (i.e., required knowledge, skills, courses, etc.)

Not in particular. Since this class will be a interactive class, you are encouraged to think about the physical phenomenon under discussion on your own and ask questions actively.

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