Skip to main content
Graph
Search
fr
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Practice
Publications
Startups
Units
Show all results for
Home
Lecture
Quantization of Spin in QFT
Graph Chatbot
Related lectures (30)
Spinorial Fields: Lorentz Group Representation
Covers the most general representation of Lorentz group on spinorial fields.
Quantum Field Theory: AQFT
Covers Advanced Quantum Field Theory with a focus on spinors, wave functions, rotations, and constraints.
Kinematics and Dynamics of Rigid Bodies
Explores kinematics and dynamics of rigid bodies, including Euler angles and moment of inertia.
Chirality & Helicity: Understanding QFT
Explores chirality, helicity, and spinors in Quantum Field Theory, focusing on normalization and completeness relations.
Rotations: Angular Momentum
Covers angular momentum in rotations, including preservation of angles and vector products.
Laws of Transformation of Velocities and Accelerations
Covers the laws of transformation of speeds and accelerations, including the rotation of points and dynamic movement principles.
Advanced Quantum Field Theory
Covers advanced topics in Quantum Field Theory, including representations of the Poincare group and the construction of unitary irreps.
Dynamics of Solid Bodies
Explores the dynamics of solid bodies, covering speed, acceleration, and rotation principles.
Advanced Physics I: Variable Mass Systems
Covers variable mass systems, center of mass, and rotation concepts in advanced physics.
Isometries & Orientation in Modern Geometry
Explores true angle magnitude, reflections, isometries, and symmetries in modern geometry, with practical CAD applications.
Quantum Field Theory: Advanced Topics
Covers advanced topics in Quantum Field Theory, including quantization of fields and the organization of fields into irreducible representations.
Physics 1: Normal Acceleration and Spatial Rotations
Explores normal acceleration, spatial rotations, vector rotation, and angular speed concepts in physics.
Vector Fields and Lorentz Tensors: Representation Theory
Covers the transformation properties of vector fields and their representation in Lorentz tensors.
EM Field: Discrete Symmetries
Covers EM Field and Discrete Symmetries, emphasizing the importance of symmetries in quantum field theory.
Statistical Field Theory
Covers the basics of statistical field theory, focusing on Ising models and the Ginsburg-Landau theory.
Angular Momentum Theorem
Covers torque force, angular momentum theorem, gyroscopic effects, and procession of the earth's axis.
Moment of Inertia: Solid Rotation
Covers the concept of moment of inertia for solid rotation and its independence from movement and reference frame choice.
Angular Momentum Theorem: Dynamics of Solid
Explores the angular momentum theorem and dynamics of solids with fixed axes, including the physical pendulum and vector components of angular momentum.
Rotations and Symmetries
Covers the preservation of isometry by rotations and symmetries.
Solid Mechanics: Motion Analysis
Explores the analysis of motion in solid mechanics, covering velocity, acceleration, and kinematics of solid bodies.
Previous
Page 1 of 2
Next