Displaying 11 - 20 of 135 Resources

Calculating kinetic energy

Mathematical expressions, which quantify how the stored energy in a system depends on its configuration (e.g. relative positions of charged particles, compression of a spring) and how kinetic energy depends on mass and speed, allow the concept of conservation of energy to be used to predict and describe system behaviour.

Subject and Topic
Form 1
Physics
Work, energy and power
Energy
Resource Type
Video
Language
English
Publisher
Khan Academy
Publication Date
2021
Creator/Author
Sal Khan
Keyword
Kinetic Energy
Energy

Calculating velocity using energy

Learn how you can calculate the launch velocity of an object by using the total energy of a system. Energy that is conserved can be transferred within a system from one object to another changing the characteristics of each object, like velocity.

Subject and Topic
Form 1
Physics
Work, energy and power
Energy
Resource Type
Video
Language
English
Publisher
Khan Academy
Publication Date
2021
Creator/Author
Sal Khan
Keyword
Velocity
Energy

Calculations on motion in one dimension

In this unit you will apply your understanding of the components of motion in one dimension using linear equations. This will help you to solve problems about motion in one direction and equip you to understand how these concepts apply to everyday life.

There are three equations for linear motion with constant acceleration. They can be used to calculate, and therefore predict, the outcome of motion when three out of the four variables are known.

Subject and Topic
Form 2
Physics
Motion in a straight line
Speed and velocity
Resource Type
Werkbladen en klassikale activiteiten
Language
English
Publisher
Department of Higher Education
Publication Date
No date
Creator/Author
Leigh Kleynhans
Contributor
Michael Atkinson
Keyword
Motion
Initial Velocity
Final Velocity
Acceleration

Charges and Fields

  • Determine the variables that affect the strength and direction of the electric field for a static arrangement of charges.
  • Investigate the variables that affect the strength of the electrostatic potential (voltage).
  • Explain equipotential lines and compare them to the electric field lines.
  • For an arrangement of static charges, predict the electric field lines. Verify the prediction using vector addition.
Subject and Topic
Form 1
Physics
Force
Types of forces
Resource Type
Simulatie
Language
English
Publisher
pHET Interactive Simulations
Publication Date
No date
Creator/Author
Amy Rouinfar (lead designer - HTML5)
Keyword
Electric Field
Voltage
Electrostatics

Circuit Construction Kit: AC

  • Explain basic electricity relationships in series and parallel circuits.
  • Use an ammeter and voltmeter to take readings in circuits.
  • Provide reasoning to explain the measurements and relationships in circuits.
  • Build circuits from schematic drawings.
  • Determine if common objects are conductors or insulators.
  • Compare and contrast AC and DC circuits.
  • Describe how capacitors and inductors behave in a circuit.
  • Experimentally determine the RC time constant.
  • Construct RLC circuits and determine the conditions for resonance.
Subject and Topic
Form 2
Physics
Current electricity
Concept of current electricity
Resource Type
Simulatie
Language
English
Publisher
pHET Interactive Simulations
Publication Date
No date
Creator/Author
Amy Rouinfar (lead designer - HTML5)
Keyword
Electric Circuit
RLC Circuit
Ohm's Law

Circuit Construction Kit: DC

  • Explore basic electricity relationships.
  • Explain basic electricity relationships in series and parallel circuits.
  • Use an ammeter and voltmeter to take readings in circuits.
  • Provide reasoning to explain the measurements and relationships in circuits.
  • Build circuits from schematic drawings.
  • Determine if common objects are conductors or insulators.
Subject and Topic
Form 2
Physics
Current electricity
Simple electric circuits
Resource Type
Simulatie
Language
English
Publisher
pHET Interactive Simulations
Publication Date
No date
Creator/Author
Amy Rouinfar (lead designer - HTML5)
Keyword
Series Circuit
Parallel Circuit
Ohm's Law

The concept of mechanical advantage

The amount of effort saved when using machines is called mechanical advantage (MA). Simple machines use mechanical advantage as a key property to their functionality, helping humans perform tasks that would require more force than a person could produce. We will use the lever as an example of a simple machine to illustrate the concept of mechanical advantage.

Subject and Topic
Form 2
Physics
Simple machines
Concept of simple machines
Resource Type
Werkbladen en klassikale activiteiten
Language
English
Publisher
Department of Higher Education
Publication Date
No date
Creator/Author
Leigh Kleynhans
Contributor
Michael Atkinson
Keyword
Effort Force
Resistance Force
Mechanical Advantage

Coulomb's Law

  • Relate the electrostatic force magnitude to the charges and the distance between them
  • Explain Newton's third law for electrostatic forces
  • Use measurements to determine Coulomb’s constant
  • Determine what makes a force attractive or repulsive
Subject and Topic
Form 1
Physics
Force
Types of forces
Resource Type
Simulatie
Language
English
Publisher
pHET Interactive Simulations
Publication Date
No date
Creator/Author
Michael Barlow (lead developer)
Keyword
Coulomb's Law
Electrostatics
Electric Force

Current Electricity

In this lesson you will learn that:

  • Circuit diagrams are used to show how electrical components are connected in a circuit.
  • Individual circuit components are represented using circuit symbols.
  • Current is the flow of electrons around a circuit.
  • Ammeters are used to measure the current flowing through components. 
  • Components in a circuit resist current flow.
  • Voltmeters are used to measure the potential difference across components.
Subject and Topic
Form 2
Physics
Current electricity
Resource Type
Cursus
Language
English
Publication Date
2023

Density

Concept of density. This YouTube video will provide information about the concept of density. It’s great to use as an introduction to the topic or as a way to summarise the topic.

Subject and Topic
Form 1
Physics
Measurement
Derived quatities
Resource Type
Video
Language
English
Publisher
Fernando Ortiz
Publication Date
2021
Creator/Author
Fernando Ortiz