MITx
Mechanics: Kinematics and Dynamics
Learn about kinematics and dynamics in this calculus-based physics course.
- MIT
- 6 weeks, 11 hours/week
- Self-paced
- Free course
- Advanced
Free online
Learn Mechanics online: university courses, full YouTube courses, and courses with free certificates, from the IITs, MIT, Harvard, Google, Microsoft and more.
MITx
Learn about kinematics and dynamics in this calculus-based physics course.
MITx
Learn about momentum and energy in this calculus-based physics course.
MITx
Learn about rotational dynamics, rigid bodies and moment of inertia in this calculus-based physics course.
MITx
Learn how to solve and understand simple harmonic motion in this calculus-based physics class.
Massachusetts Institute of Technology
View the complete course: https://ocw.mit.edu/8-03SCF16 Instructor: Yen-Jie Lee This is the third course in the core physics curriculum at MIT, following 8.01 Physics I: Classical Mechanics and 8.02 Physics II: Electricity and Magnetism. Topics include mechanical vibrations and waves, electromagnet…
MITx
Want to learn about quantum bits, quantum logic gates, quantum algorithms, and quantum communications, and know some linear algebra but haven't yet learned much about quantum mechanics? This is the course for you!
MITx
Already know something about quantum mechanics, quantum bits and quantum logic gates, but want to design new quantum algorithms, and explore multi-party quantum protocols? This is the course for you!
MITx
Vibrations and Waves appear in many parts of physics, ranging from simple mechanical systems, to the light that we see, and even to the quantum realm. In this course we develop a fundamental grounding in this important topic, beginning with oscillations of simple systems of discrete masses, continu…
Massachusetts Institute of Technology
Instructor: Professor Robert Field View the complete course: https://ocw.mit.edu/5-61F17 This course is an introduction to quantum chemistry. Topics include particles and waves; wave mechanics; matrix mechanics; perturbation theory; molecular orbital theory; molecular structure; and photochemistry.…
Harvard University
Learn the significance of electrochemistry, understanding how electrical, chemical, and mechanical energy are linked.
Massachusetts Institute of Technology
View the complete course: http://ocw.mit.edu/7-01SCF11 Fundamentals of Biology focuses on the basic principles of biochemistry, molecular biology, genetics, and recombinant DNA. These principles are necessary to understanding the basic mechanisms of life and anchor the biological knowledge that is…
MITx
Vibrations and Waves appear in many parts of physics, ranging from simple mechanical systems, to the light that we see, and even to the quantum realm. In this course we develop a fundamental grounding in this important topic, beginning with oscillations
MITx
Discover the physical principles behind diodes, light-emitting devices, and memories.
MITx
In this final part of 8.02, we will cover Faraday’s Law, Circuits with Inductors, Maxwell’s equations, and electromagnetic radiation. This introductory Electromagnetism physics course will require the use of calculus
MITx
Learn how charges create and move in magnetic fields and how to analyze simple DC circuits. This introductory Electromagnetism physics course will require the use of calculus.
MITx
Learn how charges interact with each other and create electric fields and electric potential landscapes. This introductory Electromagnetism physics course requires the use of calculus.
MITx
Explore materials from the atomic to the continuum level, and apply your learning to mechanics and engineering problems.
Massachusetts Institute of Technology
This course covers time-dependent quantum mechanics and spectroscopy. Topics include perturbation theory, two-level systems, light-matter interactions, relaxation in quantum systems, correlation functions and linear response theory, and nonlinear spectroscopy.
MITx
Explore materials from the atomic to the continuum level, and apply your learning to mechanics and engineering problems.
MITx
Explore materials from the atomic to the continuum level, and apply your learning to mechanics and engineering problems.