PHYS 60 Physics - Provincial Level further develops physics' core concepts, building upon introductory material. In this course students explore the nature, scope, relevance and limitations of physics. Students will study two-dimensional kinematics and dynamics, electrostatics, electromagnetism, waves and optics. Upon completion of this course, students are ready to enter further post-secondary studies in physics. This course qualifies for the BC Adult Graduation Diploma.
Notes:
See the ABE Articulation Handbook 2023/24 Edition at https://www.bctransferguide.ca/transfer-options/adult-basic-education/past-abe-guides/
Accessibility Services Notice
Students who would like an academic accommodation and who have a documented disability should contact Accessibility Services, if they have not already done so.Course Details| Total number of weeks | 15 |
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| Total Credits | |
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| Total Hours | 128 |
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Typical hours per week breakdown| Lecture | 4 |
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| Lab (lab, field, computer) | 4.5 |
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Learning Outcomes
Upon successful completion of this course, the learner will be able to:
- Kinematics in Two Dimensions
a. use the language and concepts of kinematics to describe motion in two dimensions.
b. resolve, add and subtract vectors.
c. analyze and solve kinematics in two dimensions.
- Dynamics in Two Dimensions
a. use the language and concepts of dynamics to describe forces, energy and momentum.
b. analyze and solve dynamics in two dimensions using free body diagrams
i. two-dimensional equilibrium – translational and rotational
ii. momentum in two dimensions
iii. energy conservation
iv. uniform circular motion.
- Electrostatics
a. use the language and concepts of physics to describe electrostatic phenomena.
b. analyze and solve electrostatic forces and electric fields in two dimensions.
c. analyze and solve electric potential and electric potential energy.
- Electromagnetism
a. use the language and concepts of physics to describe electromagnetic phenomena
b. analyze and solve problems involving magnetic forces and magnetic fields in two dimensions
c. analyze and solve problems involving electromagnetic induction – Faraday’s Law and Lenz’s law
d. describe devices that operate using electromagnetic induction.
- Waves and Optics
a. use the language and concepts of physics to describe wave phenomena.
b. define and distinguish between amplitude, wavelength, frequency, wave speed and period.
c. analyze and solve problems involving wave phenomena – refraction, reflection, total internal reflection.
d. describe various wave phenomena and the conditions which produce them.
e. construct ray diagrams for mirrors and lenses.
Options:
The following topics may be useful to students going on to further physics courses:
a) AC circuits
b) Relativity
c) Quantum physics
d) Electronics
e) Fluids
f) Nuclear physics
g) Kirchoff’s Laws
- Laboratories:
There should be one laboratory from each topic and a minimum of seven laboratories. Laboratory skills must include:
a. collecting data through observation:
i. record a measurement to the appropriate level of precision; and
ii. recognize that all measured values have an uncertainty.
b. constructing graphs:
i. choose appropriate scales
ii. determine line of best fit
iii. label correctly.
c. drawing conclusions from observations and data:
i. identify and discuss sources of error
ii. calculate and interpret the slope of a line
iii. relate conclusions to objectives.
d. calculating experimental error:
i. determine % error and % difference where appropriate.
e. completing formal lab reports.
Teaching and Learning Approach
Upgrading courses at Selkirk College build upon students’ life, education, and cultural experiences to develop
subject-specific knowledge, awareness, practical skills, and study skills. The learning outcomes listed in this
outline form the foundation of the course, and how thoroughly a student meets these outcomes determines their
success. Course content integrates problem solving and critical thinking, while developing effective
communication skills for the discipline and level. This course further enables students to meet the program
outcomes for Academic Upgrading.Learning Resources
Required: Scientific Calculator
Textbook available: OpenStax PhysicsHighshoolDetailed Course Content, Topics, and Sequence Covered
1. Topic 1: Math Skills for Physics
2. Topic 1: Math Skills for Physics
3. Topic 2: Dynamics & Kinematics in 1-D
4. Topic 3: Dynamics & Kinematics in 2-D
5. Topic 4: 2-D Translational and Rotational Motion
6. Topic 4: 2-D Translational and Rotational Motion
7. Topic 5: Momentum
8. Midterm Review
9. Topic 6: Energy Conservation
10. Topic 7: Uniform Circular Motion & Gravitation
11. Topic 8: Electrostatics
12. Topic 9: Electromagnetism
13. Topic 10: Electromagnetic Induction
14. Final Review
15. Final ReviewAssessment
| Title | Learning Outcomes | Value |
|---|
| Assignments | | 20% |
| Labs | | 25% |
| Topic Tests | | 25% |
| Midterm Exam | | 15% |
| Final Exam | | 15% |
| Total | 100% |
Grading Table
Standard Academic Upgrading Grading Table
| Percentage |
Letter Grade |
| 90-100 |
A+ |
| 85-89 |
A |
| 80-84 |
A- |
| 76-79 |
B+ |
| 72-75 |
B |
| 68-71 |
B- |
| 64-67 |
C+ |
| 60-63 |
C |
| 55-59 |
C- |
| 50-54 |
P |
| Non-completion or unsatisfactory performance |
NCG
No Credit Granted |
See the Academic Calendar for General Information including how to withdraw from course(s) and other regulations.
Disclaimer
Information contained in this course outline is correct at the time of publication. Content of the course is revised on an ongoing basis to ensure relevance to changing educational, employment and market needs. The instructor will endeavor to provide notice of changes to students as soon as possible. The instructor reserves the right to add or delete material from courses.