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James Cook University Subject Handbook - 2022

For subject information from 2025 and onwards, please visit the new JCU Course and Subject Handbook website.

PH2002 - Classical Mechanics and Quantum Physics 1

Credit points:03
Year:2022
Student Contribution Band:Band 2
Prerequisites:MA1003 AND PH1005 AND (PH1006 OR PH1007 OR (EG1012 AND EG1011))
Administered by:College of Science and Engineering (pre 2023 PCS)

Subject Description

    Quantum physics - Schrodinger equation, eigenfunctions, measurements and eigenvalues, solutions for 1-dimensional systems, concepts of atomic, molecular, solid state and particle physics. Classical mechanics, waves and vibrations.

Learning Outcomes

  • select and evaluate computational and/or theoretical techniques and tools in order to conduct an investigation
  • communicate the theoretical concepts, and mathematical calculations, of an investigation with an oral and written presentation
  • solve problems in Classical and Quantum Mechanics, using the necessary physics concepts, principles, and discipline areas of mathematics

Subject Assessment

  • Written > Examination (centrally administered) - (60%) - Individual
  • Written > Log/logbook - (25%) - Individual
  • Written > Problem task - (15%) - Individual

Note that minor variations might occur due to the continuous subject quality improvement process, and in case of minor variation(s) in assessment details, the Subject Outline represents the latest official information.

Availabilities

Cairns, Study Period 1, Internal

Census date:Thursday, 24 Mar 2022
Study Period Dates:Monday, 21 Feb 2022 to Friday, 17 Jun 2022
Coordinator(s):
DR Greg Boyle
Lecturer(s):
DR Greg Boyle
Workload expectations:The student workload for this 3 credit point subject is approximately 130 hours.
  • 39 Hours - Lectures (didactic or interactive)
  • 13 Hours - Tutorials
  • 39 Hours - Workshops - Laboratory

Townsville, Study Period 1, Internal

Census date:Thursday, 24 Mar 2022
Study Period Dates:Monday, 21 Feb 2022 to Friday, 17 Jun 2022
Coordinator(s):
DR Greg Boyle
Lecturer(s):
DR Greg Boyle
Workload expectations:The student workload for this 3 credit point subject is approximately 130 hours.
  • 39 Hours - Lectures (didactic or interactive)
  • 13 Hours - Tutorials
  • 39 Hours - Workshops - Laboratory