O Level Dynamics

Exam Prep
Année2026
Durée2h 19m

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10 commentaires

Sally SoweJul 3, 2026

Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15Ld6KabsL9x9X-t4GefBgSzXFDckJFa6 1.5 Forces 1.5.1 Balanced and unbalanced forces 1 Identify and use different types of force, including weight (gravitational force), friction, drag, air resistance, tension (elastic force), electrostatic force, magnetic force, thrust (driving force) and contact force 2 Identify forces acting on an object and draw free-body diagram(s) representing the forces 3 State Newton’s first law as ‘an object either remains at rest or continues to move in a straight line at constant speed unless acted on by a resultant force’ 4 State that a force may change the velocity of an object by changing its direction of motion or its speed 5 Determine the resultant of two or more forces acting along the same straight line 6 Recall and use the equation resultant force = mass × acceleration F=ma 7 State Newton’s third law as ‘when object A exerts a force on object B, then object B exerts an e

KimChiuJul 3, 2026

Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15Ld6KabsL9x9X-t4GefBgSzXFDckJFa6 1.5 Forces 1.5.1 Balanced and unbalanced forces 1 Identify and use different types of force, including weight (gravitational force), friction, drag, air resistance, tension (elastic force), electrostatic force, magnetic force, thrust (driving force) and contact force 2 Identify forces acting on an object and draw free-body diagram(s) representing the forces 3 State Newton’s first law as ‘an object either remains at rest or continues to move in a straight line at constant speed unless acted on by a resultant force’ 4 State that a force may change the velocity of an object by changing its direction of motion or its speed 5 Determine the resultant of two or more forces acting along the same straight line 6 Recall and use the equation resultant force = mass × acceleration F=ma 7 State Newton’s third law as ‘when object A exerts a force on object B, then object B exerts an e

MajoJul 3, 2026

Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15Ld6KabsL9x9X-t4GefBgSzXFDckJFa6 1.5 Forces 1.5.1 Balanced and unbalanced forces 1 Identify and use different types of force, including weight (gravitational force), friction, drag, air resistance, tension (elastic force), electrostatic force, magnetic force, thrust (driving force) and contact force 2 Identify forces acting on an object and draw free-body diagram(s) representing the forces 3 State Newton’s first law as ‘an object either remains at rest or continues to move in a straight line at constant speed unless acted on by a resultant force’ 4 State that a force may change the velocity of an object by changing its direction of motion or its speed 5 Determine the resultant of two or more forces acting along the same straight line 6 Recall and use the equation resultant force = mass × acceleration F=ma 7 State Newton’s third law as ‘when object A exerts a force on object B, then object B exerts an e

Nadine LustreJul 3, 2026

Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15Ld6KabsL9x9X-t4GefBgSzXFDckJFa6 1.5 Forces 1.5.1 Balanced and unbalanced forces 1 Identify and use different types of force, including weight (gravitational force), friction, drag, air resistance, tension (elastic force), electrostatic force, magnetic force, thrust (driving force) and contact force 2 Identify forces acting on an object and draw free-body diagram(s) representing the forces 3 State Newton’s first law as ‘an object either remains at rest or continues to move in a straight line at constant speed unless acted on by a resultant force’ 4 State that a force may change the velocity of an object by changing its direction of motion or its speed 5 Determine the resultant of two or more forces acting along the same straight line 6 Recall and use the equation resultant force = mass × acceleration F=ma 7 State Newton’s third law as ‘when object A exerts a force on object B, then object B exerts an e

Michael LeseheJul 3, 2026

Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15Ld6KabsL9x9X-t4GefBgSzXFDckJFa6 1.5 Forces 1.5.1 Balanced and unbalanced forces 1 Identify and use different types of force, including weight (gravitational force), friction, drag, air resistance, tension (elastic force), electrostatic force, magnetic force, thrust (driving force) and contact force 2 Identify forces acting on an object and draw free-body diagram(s) representing the forces 3 State Newton’s first law as ‘an object either remains at rest or continues to move in a straight line at constant speed unless acted on by a resultant force’ 4 State that a force may change the velocity of an object by changing its direction of motion or its speed 5 Determine the resultant of two or more forces acting along the same straight line 6 Recall and use the equation resultant force = mass × acceleration F=ma 7 State Newton’s third law as ‘when object A exerts a force on object B, then object B exerts an e

Misha ✨Jul 3, 2026

Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15Ld6KabsL9x9X-t4GefBgSzXFDckJFa6 1.5 Forces 1.5.1 Balanced and unbalanced forces 1 Identify and use different types of force, including weight (gravitational force), friction, drag, air resistance, tension (elastic force), electrostatic force, magnetic force, thrust (driving force) and contact force 2 Identify forces acting on an object and draw free-body diagram(s) representing the forces 3 State Newton’s first law as ‘an object either remains at rest or continues to move in a straight line at constant speed unless acted on by a resultant force’ 4 State that a force may change the velocity of an object by changing its direction of motion or its speed 5 Determine the resultant of two or more forces acting along the same straight line 6 Recall and use the equation resultant force = mass × acceleration F=ma 7 State Newton’s third law as ‘when object A exerts a force on object B, then object B exerts an e

Chuky Max HarmonyJul 3, 2026

Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15Ld6KabsL9x9X-t4GefBgSzXFDckJFa6 1.5 Forces 1.5.1 Balanced and unbalanced forces 1 Identify and use different types of force, including weight (gravitational force), friction, drag, air resistance, tension (elastic force), electrostatic force, magnetic force, thrust (driving force) and contact force 2 Identify forces acting on an object and draw free-body diagram(s) representing the forces 3 State Newton’s first law as ‘an object either remains at rest or continues to move in a straight line at constant speed unless acted on by a resultant force’ 4 State that a force may change the velocity of an object by changing its direction of motion or its speed 5 Determine the resultant of two or more forces acting along the same straight line 6 Recall and use the equation resultant force = mass × acceleration F=ma 7 State Newton’s third law as ‘when object A exerts a force on object B, then object B exerts an e

@AdjoapapabiJul 3, 2026

Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15Ld6KabsL9x9X-t4GefBgSzXFDckJFa6 1.5 Forces 1.5.1 Balanced and unbalanced forces 1 Identify and use different types of force, including weight (gravitational force), friction, drag, air resistance, tension (elastic force), electrostatic force, magnetic force, thrust (driving force) and contact force 2 Identify forces acting on an object and draw free-body diagram(s) representing the forces 3 State Newton’s first law as ‘an object either remains at rest or continues to move in a straight line at constant speed unless acted on by a resultant force’ 4 State that a force may change the velocity of an object by changing its direction of motion or its speed 5 Determine the resultant of two or more forces acting along the same straight line 6 Recall and use the equation resultant force = mass × acceleration F=ma 7 State Newton’s third law as ‘when object A exerts a force on object B, then object B exerts an e

Eddy LamaJul 3, 2026

Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15Ld6KabsL9x9X-t4GefBgSzXFDckJFa6 1.5 Forces 1.5.1 Balanced and unbalanced forces 1 Identify and use different types of force, including weight (gravitational force), friction, drag, air resistance, tension (elastic force), electrostatic force, magnetic force, thrust (driving force) and contact force 2 Identify forces acting on an object and draw free-body diagram(s) representing the forces 3 State Newton’s first law as ‘an object either remains at rest or continues to move in a straight line at constant speed unless acted on by a resultant force’ 4 State that a force may change the velocity of an object by changing its direction of motion or its speed 5 Determine the resultant of two or more forces acting along the same straight line 6 Recall and use the equation resultant force = mass × acceleration F=ma 7 State Newton’s third law as ‘when object A exerts a force on object B, then object B exerts an e

الدحمشي 👻Jul 3, 2026

Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15Ld6KabsL9x9X-t4GefBgSzXFDckJFa6 1.5 Forces 1.5.1 Balanced and unbalanced forces 1 Identify and use different types of force, including weight (gravitational force), friction, drag, air resistance, tension (elastic force), electrostatic force, magnetic force, thrust (driving force) and contact force 2 Identify forces acting on an object and draw free-body diagram(s) representing the forces 3 State Newton’s first law as ‘an object either remains at rest or continues to move in a straight line at constant speed unless acted on by a resultant force’ 4 State that a force may change the velocity of an object by changing its direction of motion or its speed 5 Determine the resultant of two or more forces acting along the same straight line 6 Recall and use the equation resultant force = mass × acceleration F=ma 7 State Newton’s third law as ‘when object A exerts a force on object B, then object B exerts an e