Physics:Quantum Stern-Gerlach experiment: Difference between revisions
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{{Short description|Experiment demonstrating quantized spin projections}} | {{Short description|Experiment demonstrating quantized spin projections}} | ||
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|image=[[File:Quantum_Stern_Gerlach_experiment_educational_yellow.png|430px|Stern-Gerlach experiment: an atomic beam splits into discrete spin components in an inhomogeneous magnetic field.]] | |image=[[File:Quantum_Stern_Gerlach_experiment_educational_yellow.png|430px|Stern-Gerlach experiment: an atomic beam splits into discrete spin components in an inhomogeneous magnetic field.]] | ||
|text='''Quantum Stern-Gerlach experiment''' is a planned ScholarlyWiki page in the Quantum Collection about spin quantization in an inhomogeneous magnetic field. | |text='''Quantum Stern-Gerlach experiment''' is a planned ScholarlyWiki page in the Quantum Collection about spin quantization in an inhomogeneous magnetic field. | ||
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== Overview == | == Overview == | ||
Placeholder: introduce the Stern-Gerlach experiment as a key demonstration that angular momentum projections are quantized. | Placeholder: introduce the Stern-Gerlach experiment as a key demonstration that angular momentum projections are quantized. | ||
Revision as of 11:32, 22 May 2026
Quantum Stern-Gerlach experiment is a planned ScholarlyWiki page in the Quantum Collection about spin quantization in an inhomogeneous magnetic field.
Overview
Placeholder: introduce the Stern-Gerlach experiment as a key demonstration that angular momentum projections are quantized.
Key ideas
Placeholder: cover spin, magnetic moment, inhomogeneous magnetic field, quantized outcomes, measurement.
Historical setup
Placeholder: develop this section with definitions, experimental details, formulas, and links to related Quantum Collection pages.
Spin splitting
Placeholder: develop this section with definitions, experimental details, formulas, and links to related Quantum Collection pages.
Measurement outcomes
Placeholder: develop this section with definitions, experimental details, formulas, and links to related Quantum Collection pages.
Role in quantum mechanics
Placeholder: develop this section with definitions, experimental details, formulas, and links to related Quantum Collection pages.
See also
Table of contents (217 articles)
Index
Full contents
References
Source attribution: Physics:Quantum Stern-Gerlach experiment
