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Lecture
Minimization Principle: Experiments
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Related lectures (30)
Experimental Physics: Measurement and Precision
Covers measurement techniques, precision, systematic errors, and their impact on experimental outcomes.
Overview of Particle Physics and Rutherford Scattering
Covers the constituents of matter, fundamental forces, the Standard Model, natural units, and particle interaction experiments.
Experiments with Fixed Axis Solids
MOOC: Undeformable Solid Mechanics
Explores experiments with solids having a fixed axis and the behavior of physical pendulums.
Elementary Electrical Charge and Avogadro Constant
Explores the determination of elementary electrical charge and Avogadro constant through the oil-drop method.
Quantum Physics: Historical Introduction and Schtenger-Lach Experiment
Delves into the historical development and significance of quantum physics, highlighting the failure of classical physics and the key Schtenger-Lach experiment.
Thermodynamic Transformations and Entropy
Explores thermodynamic transformations of ideal gases, heat capacity, entropy, and adiabatic processes.
Bell Test: Distinguishing Physical Theories
Introduces the Bell test, exploring conclusions from local causality and quantum theory.
Dark Matter Detection: WIMPs and Experimental Techniques
Covers the detection of dark matter, focusing on WIMPs and experimental techniques used in laboratories.
The weak interactions of leptons
Delves into neutrino flavors, muon decay, LFU violation, and neutrino-quark scattering, exploring weak interactions of leptons.
Nonlinear Photoluminescence in Gold
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Particle Physics: Fundamentals and Interactions
Covers the basics of particle physics, including elementary particles, forces, the Standard Model, and rare phenomena at the LHC.
Experiments, Speed of Light
MOOC: Mechanics: Change of Reference Frame and Relativity
Explores Einstein's principle of relativity and the speed of light through experiments and historical context.
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.
Thermodynamic Equilibrium
Explores entropy, multiplicities, and thermodynamic equilibrium, emphasizing the fundamental law of entropy increase in closed systems.
Elementary Particles: Decays and Properties
Explores elementary particle decays, stability, lifetimes, and properties measurement through kinematic reconstruction and experimental examples.
Decoiling Phenomenon in Fluid Dynamics
Delves into the decoiling effect in high viscosity fluids, using honey as an example in an experiment to characterize the phenomenon.
Dark matter: Heavy neutrinos
Delves into the seesaw mechanism and the implications of heavy neutrinos in the standard model.
Action-Reaction Law, Collisions
Explores the action-reaction law, collisions, and conservation of momentum through various experiments and mathematical models.
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Explores the thermodynamic identity, entropy-temperature relationship, and pressure definition, illustrating key principles with practical examples.
Viscosity experiment
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Covers a viscosity experiment using a falling sphere viscometer to determine fluid viscosity and understand the forces involved.
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