Alberta Science 10Teaching resource · Alberta POS aligned

Units / Unit B

Energy Flow in Technological Systems

Science and TechnologyTeachable

The first and second laws (conservation and conversion) of thermodynamics have been useful in the development of modern and efficient energy conversion devices. Students investigating mechanical energy conversions and transfers in systems will recognize that while energy is conserved, useful energy diminishes with each conversion.

Focusing questions

  • Which came first, science or technology, and is it possible for technological development to take place without help from pure science?
  • How did efforts to improve the efficiency of heat engines result in the formulation of the first and second laws of thermodynamics?
  • How can the analysis of moving objects help in the understanding of changes in kinetic energy, force and work?
  • Why are efficiency and sustainability important considerations in designing energy conversion technologies?

Key concepts (POS)

  • forms and interconversions of energy
  • technological innovations of engines that led to the development of the concept of energy
  • one-dimensional motion
  • mechanical energy conversions and work
  • design and function of technological systems and devices involving potential and kinetic energy and thermal energy conversions
  • efficient use of energy, and the environmental impact of inefficient use of energy

Lessons

  1. Lesson 1

    Forms of Energy in Natural and Technological Systems

    Illustrate that energy exists in many forms across natural and technological systems (B-GO1-SO1).

    B-GO1

    75 min · 10 slides

    Present →
  2. Lesson 2

    Energy Transformation Technologies

    Describe technologies that transform energy and produce measurable changes (B-GO1-SO2).

    B-GO1

    75 min · 8 slides

    Present →
  3. Lesson 3

    Engines, Trial and Error, and the Idea of Energy

    Trace engine development and how observations built the energy concept (B-GO1-SO3, B-GO1-SO4).

    B-GO1

    80 min · 8 slides

    Present →
  4. Lesson 4

    Kinetic, Potential, and Chemical Energy

    Evidence for energy; define KE, PE, and chemical potential energy (B-GO2-SO1–SO3).

    B-GO2

    75 min · 8 slides

    Present →
  5. Lesson 5

    Scalars, Vectors, and One-Dimensional Motion

    Scalars vs vectors; displacement, velocity, acceleration; constant speed (B-GO2-SO4–SO7).

    B-GO2

    75 min · 8 slides

    Present →
  6. Lesson 6

    Force, Work, Gravitational PE, and the Joule

    Force, work, Ep, Ek, energy change, and the joule as SI unit (B-GO2-SO8–SO12).

    B-GO2

    85 min · 9 slides

    Present →
  7. Lesson 7

    Mechanical Energy Transformations

    Analyze 1D motion and work with algebra (B-GO2-SO13).

    B-GO2

    75 min · 8 slides

    Present →
  8. Lesson 8

    Motion Graphs and Work from Graphs

    Velocity–time and force–distance graphs (B-GO2-SO14, B-GO2-SO15).

    B-GO2

    75 min · 8 slides

    Present →
  9. Lesson 9

    Thermodynamic Laws and Useful Energy

    Energy transformations in devices; first and second law; useful energy (B-GO3-SO1–SO4).

    B-GO3

    75 min · 8 slides

    Present →
  10. Lesson 10

    Efficiency and Alberta Energy Systems

    Quantitative efficiency; Alberta fuels; stewardship (B-GO3-SO5–SO8).

    B-GO3

    75 min · 8 slides

    Present →