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First observation of gravitational waves
Natural sciences
Physics
Relativity
General relativity
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Related lectures (30)
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Constructing Correlators with Path Integrals
Explores constructing correlators using path integrals in quantum mechanics, focusing on the Euclidean and Minkowski spaces and the significance of imaginary time evolution.
Black Hole Superradiance: Detection and Consequences
Explores black hole superradiance, its consequences, and the detection of ultra-light fields beyond the Standard Model.
Forces in Physics: Gravitational and Electromagnetic Interactions
Explores gravitational and electromagnetic forces, friction, and Hooke's law.
Introduction to Orbital Mechanics
Covers gravitational well, orbital motion, Rosetta mission focus, and quizzes.
Central Force Motion: Conservation of Angular Momentum
Explores central force motion and the conservation of angular momentum in dynamic systems, with practical applications in orbital calculations.
Black Holes: Redshift and Gravitational Waves
Delves into black holes, redshift, and gravitational waves, exploring their properties and behaviors in different spacetime dimensions.
Gravitational Waves
Explores gravitational waves, black hole properties, and their implications in astrophysics.
Newton's Laws: Fundamentals
Explores Newton's laws of motion, fundamental forces in nature, and the unification of interactions.
Conceptual Quiz and Discussion
Covers conceptual questions on momentum, energy conservation, and collisions.
Quantum Optics: Harmonic Oscillator
Covers the enhanced sensitivity of the LIGO gravitational wave detector using squeezed states of light.
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