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This is a curation of Geogebra apps that are relevant to the Physics Syllabus for the [url=https://www.seab.gov.sg/content/syllabus/alevel/2017Syllabus/9749_2017.pdf]Singapore-Cambridge GCE 'A' Level (9749)[/url]. This list is a work-in-progress, as I will be adding more apps whenever I find or create relevant ones.
For O level apps, go to https://www.geogebra.org/m/z5nfs8qd
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Table of Contents
Measurement
Accuracy and Precision
Vector Addition
Relative Velocity: Boat Crossing a River
Vector Addition
Kinematics
Motion in a Straight Line Animation (with velocity)
Acceleration, velocity and displacement graphs
Projectile Motion
Projectile Motion
Kinematics of rectilinear motion
Velocity and displacement graphs
Acceleration and velocity graphs
Resolution of Vectors
Dynamics
Resultant Force on a Point Mass
Inclined Plane with Two Masses and a Pulley
Elastic & Inelastic Collisions
Forces
Buoyancy
Friction: Pulling a Box on a Horizontal Surface
Hydrostatic Pressure and Upthrust
Coplanar concurrent forces
Moments
Torque of a Couple
Forces in Equilibrium
Upthrust
Work, Energy and Power
Work done
Work done (with initial v)
Conservation of Mechanical Energy: Mass on a Vertical Spring
Motion in a Circle
Angular Displacement
Angular Velocity
Uniform Circular Motion
Aircraft in Circular Motion
Conical Pendulum
Friction as a Centripetal Force:
Vertical circular motion (uniform)
Vertical non-uniform circular motion
Centripetal Acceleration
Gravitational Field
Gravitational Potential between Two Planets
Satellite in Orbit
Escape Velocity
Gravitational Field Strength between two masses
Temperature and Ideal Gases
First Law of Thermodynamics
First Law of Thermodynamics
PV diagram for an Ideal Gas
Idealized Stirling Cycle
Oscillations
Simple Harmonic Oscillation of Mass-Spring System
Velocity vs Displacement of Simple Harmonic Oscillation
Box Losing Contact with Spring Oscillator
Resonance with Masses on Springs
Accelaration-time graph of simple harmonic motion
Wave Motion
Graphs of a Progressive Wave
Polarisation Malus' Law
Amplitude nach lineare Polarisation
Phase difference between two particles on a wave
Phase Difference between two waves
Superposition
Conditions for Formation of Stationary Waves
Standing Waves on Strings
Single Slit Diffraction Intensity - Fraunhofer limit
Double Slit Interference
Two source path difference
Wave Interference in 3D
Optical Diffraction Grating
Phase Difference on a Stationary Wave
Phase Difference on a Stationary Wave (fixed positions)
Resonant standing wave on a stretched string
Electric Fields
Electric Potential
Electric Potential for Multiple Point Charges
Charged Particle in an Electric Field
Electrostatic Forces of Two Charges on a Third
Current of Electricity
Internal Resistance
Maximum Power Theorem
Potentiometer
D.C. Circuits
Combination Electric Circuit with Four Identical Bulbs