3. Dynamics

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3 topics · 13 learning objectives

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  1. 3.1 Momentum and Newton’s laws of motion

    1. 3.1.1Mass is the property of an object that resists change in motion

      • understand that mass is the property of an object that resists change in motion

    2. 3.1.2F = ma and solve problems using it, understanding that acceleration and

      • recall F = ma and solve problems using it, understanding that acceleration and resultant force are always in the same direction

    3. 3.1.3Linear momentum as the product of mass and velocity

      • define and use linear momentum as the product of mass and velocity

    4. 3.1.4Force as rate of change of momentum

      • define and use force as rate of change of momentum

    5. 3.1.5Each of Newton’s laws of motion

      • state and apply each of Newton’s laws of motion

    6. 3.1.6The concept of weight as the effect of a gravitational field on a mass and

      • describe and use the concept of weight as the effect of a gravitational field on a mass and recall that the weight of an object is equal to the product of its mass and the acceleration of free fall

  2. 3.2 Non-uniform motion

    1. 3.2.1Frictional forces and viscous/drag forces including air resistance (no

      • show a qualitative understanding of frictional forces and viscous/drag forces including air resistance (no treatment of the coefficients of friction and viscosity is required, and a simple model of drag force increasing • As speed increases is sufficient)

    2. 3.2.2The motion of objects in a uniform gravitational field with air resistance

      • describe and explain qualitatively the motion of objects in a uniform gravitational field with air resistance

    3. 3.2.3Objects moving against a resistive force may reach a terminal (constant)

      • understand that objects moving against a resistive force may reach a terminal (constant) velocity

  3. 3.3 Linear momentum and its conservation

    1. 3.3.1The principle of conservation of momentum

      • state the principle of conservation of momentum

    2. 3.3.2The principle of conservation of momentum to solve simple problems

      • apply the principle of conservation of momentum to solve simple problems, including elastic and inelastic interactions between objects in both one and two dimensions (knowledge of the concept of coefficient of restitution is not required)

    3. 3.3.3That, for an elastic collision, total kinetic energy is conserved and the

      • recall that, for an elastic collision, total kinetic energy is conserved and the relative speed of approach is equal to the relative speed of separation

    4. 3.3.4That, while momentum of a system is always conserved in interactions between

      • understand that, while momentum of a system is always conserved in interactions between objects, some change in kinetic energy may take place