Physics

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Quantum Mechanics: 1D Scattering and Central Potentials (edX) EdX
MIT,MITx

Quantum Mechanics: 1D Scattering and Central Potentials (edX)

Dive into the fascinating world of quantum physics with our course on 1D Scattering and Central Potentials. Gain a deep understanding of essential topics like scattering processes, angular momentum, and central potentials, all while applying these principles to solve complex problems such as the hydrogen atom model. Perfect for students and professionals looking to advance their knowledge in quantum mechanics.

No sessions available
5-12 Weeks
Mechanics, Part 2 (edX) EdX
Rice University,RiceX

Mechanics, Part 2 (edX)

Explore the intricate world of mechanics with our comprehensive online course designed for students with a calculus background. Dive into the physics of motion and gain a deeper understanding of the forces at play in the universe. This edX offering is perfect for those looking to enhance their knowledge in fundamental concepts and mathematical problem-solving, crucial for all STEM fields.

Self Paced
Self-Paced
Electricity and Magnetism: Magnetic Fields and Forces (edX) EdX
MIT,MITx

Electricity and Magnetism: Magnetic Fields and Forces (edX)

Dive into the fascinating world of Electricity and Magnetism with this introductory-level physics course. Discover how charged particles interact with magnetic fields to create forces and learn to analyze simple direct current (DC) circuits. This course will equip you with a foundational understanding of the principles governing natural phenomena and advanced electronic devices.

Self Paced
Self-Paced
Advanced Fluid Mechanics 1: Fundamentals (edX) EdX
MIT,MITx

Advanced Fluid Mechanics 1: Fundamentals (edX)

Dive into the core concepts of fluid mechanics with our Advanced Fluid Mechanics 1: Fundamentals course. This edX offering provides a strong foundation in essential principles such as kinematics of deformation, hydrostatics, buoyancy, inviscid flow, Bernoulli's theorem and control volume analysis. Ideal for engineers and students seeking to understand the basics that underpin fluid dynamics.

Self Paced
Self-Paced
Introduction to Thermodynamics (FutureLearn) FutureLearn
University of Hull

Introduction to Thermodynamics (FutureLearn)

Explore the fascinating world of thermodynamics with our beginner-friendly course. Dive into understanding how heat and energy interact within systems, essential knowledge for students and professionals alike. This course will equip you with the basics needed to delve deeper into chemical properties and predict reactions effectively.

Available now
3 Weeks
Advanced Fluid Mechanics 3: Potential Flows & Boundary Layers (edX) EdX
MIT,MITx

Advanced Fluid Mechanics 3: Potential Flows & Boundary Layers (edX)

Dive deep into the intricate world of fluid mechanics with our Advanced Fluid Mechanics 3: Potential Flows & Boundary Layers course. This course is designed for those who wish to understand high Reynolds number flows, boundary layers, circulation, lift, flow separation, transition to turbulence, and the impact of surface tension on engineering applications.

Self Paced
Self-Paced
Synchrotrons and X-Ray Free-Electron Lasers – techniques and applications (edX) EdX
École Polytechnique Fédérale de Lausanne,EPFLx

Synchrotrons and X-Ray Free-Electron Lasers – techniques and applications (edX)

Explore the world of Synchrotrons and X-Ray Free-Electron Lasers (XFELs) through this unique online course. Gain an extensive introduction to these powerful scientific tools that enable researchers to investigate materials with unmatched precision and insight. From understanding molecular structures in biology to studying the electronic properties of novel materials, this course will equip you with the knowledge needed to harness the potential of synchrotron and XFEL techniques.

Self Paced
Self-Paced
Microstructural Evolution in Materials: Phase Transformations (edX) EdX
MIT,MITx

Microstructural Evolution in Materials: Phase Transformations (edX)

Dive deep into the world of materials science with our specialized course, 'Microstructural Evolution in Materials: Phase Transformations'. This module is part of a four-part series designed to provide an in-depth understanding of how the kinetics of phase transformations affect material properties. Join us on edX and explore concepts similar to MIT Course 3.022.

Self Paced
Self-Paced