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PHYC40020

Academic Year 2024/2025
The module will build upon PHYC30030. The following list of topics will be covered: Topics covered in this course include the time-dependent Schrodinger equation; the variational principle; position and momentum operators and representations (Fourier transforms); a complete treatment of the Stern-Gerlach experiment; spin; quantum dynamics; Heisenberg operators and equation of motion; two state quantum systems; spin precession in a magnetic field; ammonia molecule in an electric field, and the MASER (Nobel Prize work); nuclear magnetic resonance (Nobel Prize work); multiparticle states and tensor product; entangled states and quantum teleportation; EPR paradox and Bell Inequality.

About this Module

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Student Effort Hours:
Student Effort Type Hours

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Requirements, Exclusions and Recommendations

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Module Requisites and Incompatibles
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Assessment Strategy  
Description Timing Component Scale Must Pass Component % of Final Grade In Module Component Repeat Offered

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Carry forward of passed components
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Terminal Exam

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Please see Student Jargon Buster for more information about remediation types and timing. 

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