Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
Zainab Jallow
04/07/2026 04:59
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
Lidya Kedir
04/07/2026 04:59
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
Mikiyas
02/07/2026 14:29
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
DJ Fresh SA
02/07/2026 14:29
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
yeabsira
02/07/2026 14:29
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
mr_kamina_9263
02/07/2026 14:29
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
Stoblane
02/07/2026 14:29
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
Iyabo Ojo
02/07/2026 14:29
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
STEPHANIE BOAFO 💦🦋🥺❤️
02/07/2026 14:29
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
Avis des utilisateurs
Mégane pro
04/07/2026 04:59
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
Zainab Jallow
04/07/2026 04:59
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
Lidya Kedir
04/07/2026 04:59
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
Mikiyas
02/07/2026 14:29
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
DJ Fresh SA
02/07/2026 14:29
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
yeabsira
02/07/2026 14:29
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
mr_kamina_9263
02/07/2026 14:29
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
Stoblane
02/07/2026 14:29
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
Iyabo Ojo
02/07/2026 14:29
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
STEPHANIE BOAFO 💦🦋🥺❤️
02/07/2026 14:29
Link to our latest notes and resources:
https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM
2 Kinematics
2.1 Equations of motion
Candidates should be able to:
1 define and use distance, displacement, speed, velocity and acceleration
2 use graphical methods to represent distance, displacement, speed, velocity and acceleration
3 determine displacement from the area under a velocity–time graph
4 determine velocity using the gradient of a displacement–time graph
5 determine acceleration using the gradient of a velocity–time graph
6 derive, from the definitions of velocity and acceleration, equations that represent uniformly accelerated motion in a straight line
7 solve problems using equations that represent uniformly accelerated motion in a straight line, including the motion of bodies falling in a uniform gravitational field without air resistance
8 describe an experiment to determine the acceleration of free fall using a falling object
9 describe and explain
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