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Science Chapter 7 - Newton
191 cards·by EmmaKC444
Newton's First Law
An object in motion stays in motion and an object at rest stays at rest unless acted upon by an
outside force
Newton's Second Law
The net force of an object is equal to the product of its mass and acceleration
Newton's Third Law
For every action there is an equal and opposite reaction
speed
the distance travelled per unit of time
velocity
speed in a given direction
kinetic energy
energy of motion
potential energy
energy that is stored and held in readiness
formula of speed
Distance/Time
formula of distance
Speed/Time
formula of time
Distance/Speed
How do you find average speed?
Add all speeds and divide by the number of speeds
How did the balloon car apply to each law?
1. it was at rest until the air
Newton's First Law
An object in motion stays in motion and an object at rest stays at rest unless acted upon by an
outside force"" ""Newton's Second Law
Newton's Third Law
For every action there is an equal and opposite reaction
speed
the distance travelled per unit of time
velocity
speed in a given direction
kinetic energy
energy of motion
potential energy
energy that is stored and held in readiness
formula of speed
Distance/Time
formula of distance
Speed/Time
formula of time
Distance/Speed
How do you find average speed?
Add all speeds and divide by the number of speeds
How did the balloon car apply to each law?
1. it was at rest until the air
Newton's First Law
An object in motion stays in motion and an object at rest stays at rest unless acted upon by an
outside force
Newton's Second Law
The net force of an object is equal to the product of its mass and acceleration
Newton's Third Law
For every action there is an equal and opposite reaction
speed
the distance travelled per unit of time
velocity
speed in a given direction
kinetic energy
energy of motion
potential energy
energy that is stored and held in readiness
formula of speed
Distance/Time
formula of distance
Speed/Time
formula of time
Distance/Speed
How do you find average speed?
Add all speeds and divide by the number of speeds
How did the balloon car apply to each law?
1. it was at rest until the air
Newton's First Law
An object in motion stays in motion and an object at rest stays at rest unless acted upon by an
outside force""
Newton's Second Law
The net force of an object is equal to the product of its mass and acceleration
Newton's Third Law
For every action there is an equal and opposite reaction
speed
the distance travelled per unit of time
velocity
speed in a given direction
kinetic energy
energy of motion
potential energy
energy that is stored and held in readiness
formula of speed
Distance/Time
formula of distance
Speed/Time
formula of time
Distance/Speed
How do you find average speed?
Add all speeds and divide by the number of speeds
How did the balloon car apply to each law?
1. it was at rest until the air
Newton's First Law
An object in motion stays in motion and an object at rest stays at rest unless acted upon by an
outside force""
Newton's Second Law
The net force of an object is equal to the product of its mass and acceleration""
Newton's Third Law
For every action there is an equal and opposite reaction
speed
the distance travelled per unit of time""
velocity
speed in a given direction""
kinetic energy
energy of motion""
potential energy
energy that is stored and held in readiness""
formula of speed
Distance/Time""
formula of distance
Speed/Time""
formula of time
Distance/Speed""
How do you find average speed?
Add all speeds and divide by the number of speeds""
How did the balloon car apply to each law?
1. it was at rest until the air
Newton's First Law
An object in motion stays in motion and an object at rest stays at rest unless acted upon by an
outside force""
Newton's Second Law
The net force of an object is equal to the product of its mass and acceleration""
Newton's Third Law
For every action there is an equal and opposite reaction
speed
the distance travelled per unit of time""
velocity
speed in a given direction""
kinetic energy
energy of motion""
potential energy
energy that is stored and held in readiness""
formula of speed
Distance/Time""
formula of distance
Speed/Time""
formula of time
Distance/Speed""
How do you find average speed?
Add all speeds and divide by the number of speeds""
How did the balloon car apply to each law?
1. it was at rest until the air
Newton's First Law
An object in motion stays in motion and an object at rest stays at rest unless acted upon by an
outside force""
Newton's Second Law
The net force of an object is equal to the product of its mass and acceleration""
Newton's First Law
An object in motion stays in motion and an object at rest stays at rest unless acted upon by an
outside force""
Newton's Second Law
The net force of an object is equal to the product of its mass and acceleration""
Newton's Third Law
For every action there is an equal and opposite reaction
Newton's Third Law
For every action there is an equal and opposite reaction
speed
the distance travelled per unit of time""
velocity
speed in a given direction""
speed
the distance travelled per unit of time""
velocity
speed in a given direction""
kinetic energy
energy of motion""
kinetic energy
energy of motion""
potential energy
energy that is stored and held in readiness""
potential energy
energy that is stored and held in readiness""
formula of speed
Distance/Time""
formula of speed
Distance/Time""
formula of distance
Speed/Time""
formula of distance
Speed/Time""
formula of time
Distance/Speed""
formula of time
Distance/Speed""
How do you find average speed?
Add all speeds and divide by the number of speeds""
How do you find average speed?
Add all speeds and divide by the number of speeds""
How did the balloon car apply to each law?
1. it was at rest until the air
How did the balloon car apply to each law?
1. it was at rest until the air
Newton's First Law
An object in motion stays in motion and an object at rest stays at rest unless acted upon by an
outside force""
Newton's First Law
An object in motion stays in motion and an object at rest stays at rest unless acted upon by an
outside force""
Newton's Second Law
The net force of an object is equal to the product of its mass and acceleration""
Newton's Second Law
The net force of an object is equal to the product of its mass and acceleration""
Newton's Third Law
For every action there is an equal and opposite reaction
Newton's Third Law
For every action there is an equal and opposite reaction
speed
the distance travelled per unit of time""
speed
the distance travelled per unit of time""
velocity
speed in a given direction""
velocity
speed in a given direction""
kinetic energy
energy of motion""
kinetic energy
energy of motion""
potential energy
energy that is stored and held in readiness""
formula of speed
Distance/Time""
potential energy
energy that is stored and held in readiness""
formula of distance
Speed/Time""
formula of time
Distance/Speed""
formula of speed
Distance/Time""
How do you find average speed?
Add all speeds and divide by the number of speeds""
formula of distance
Speed/Time""
How did the balloon car apply to each law?
1. it was at rest until the air
formula of time
Distance/Speed""
How do you find average speed?
Add all speeds and divide by the number of speeds""
Newton's First Law
An object in motion stays in motion and an object at rest stays at rest unless acted upon by an
outside force""
How did the balloon car apply to each law?
1. it was at rest until the air
Newton's Second Law
The net force of an object is equal to the product of its mass and acceleration""
Newton's Third Law
For every action there is an equal and opposite reaction
speed
the distance travelled per unit of time""
velocity
speed in a given direction""
kinetic energy
energy of motion""
Newton's First Law
An object in motion stays in motion and an object at rest stays at rest unless acted upon by an
outside force""
potential energy
energy that is stored and held in readiness""
Newton's Second Law
The net force of an object is equal to the product of its mass and acceleration""
formula of speed
Distance/Time""
Newton's Third Law
For every action there is an equal and opposite reaction
formula of distance
Speed/Time""
speed
the distance travelled per unit of time""
formula of time
Distance/Speed""
How do you find average speed?
Add all speeds and divide by the number of speeds""
velocity
speed in a given direction""
How did the balloon car apply to each law?
1. it was at rest until the air
kinetic energy
energy of motion""
potential energy
energy that is stored and held in readiness""
formula of speed
Distance/Time""
formula of distance
Speed/Time""
formula of time
Distance/Speed""
Newton's First Law
An object in motion stays in motion and an object at rest stays at rest unless acted upon by an
outside force""
How do you find average speed?
Add all speeds and divide by the number of speeds""
Newton's Second Law
The net force of an object is equal to the product of its mass and acceleration""
How did the balloon car apply to each law?
1. it was at rest until the air
Newton's Third Law
For every action there is an equal and opposite reaction
speed
the distance travelled per unit of time""
Newton's First Law
An object in motion stays in motion and an object at rest stays at rest unless acted upon by an
outside force""
velocity
speed in a given direction""
Newton's Second Law
The net force of an object is equal to the product of its mass and acceleration""
kinetic energy
energy of motion""
Newton's Third Law
For every action there is an equal and opposite reaction
speed
the distance travelled per unit of time""
potential energy
energy that is stored and held in readiness""
velocity
speed in a given direction""
formula of speed
Distance/Time""
kinetic energy
energy of motion""
formula of distance
Speed/Time""
potential energy
energy that is stored and held in readiness""
formula of time
Distance/Speed""
formula of speed
Distance/Time""
How do you find average speed?
Add all speeds and divide by the number of speeds""
formula of distance
Speed/Time""
How did the balloon car apply to each law?
1. it was at rest until the air
formula of time
Distance/Speed""
How do you find average speed?
Add all speeds and divide by the number of speeds""
How did the balloon car apply to each law?
1. it was at rest until the air
Newton's First Law
An object in motion stays in motion and an object at rest stays at rest unless acted upon by an
outside force""
Newton's Second Law
The net force of an object is equal to the product of its mass and acceleration""
Newton's Third Law
For every action there is an equal and opposite reaction
speed
the distance travelled per unit of time""
velocity
speed in a given direction""
kinetic energy
energy of motion""
potential energy
energy that is stored and held in readiness""
formula of speed
Distance/Time""
formula of distance
Speed/Time""
formula of time
Distance/Speed""
How do you find average speed?
Add all speeds and divide by the number of speeds""
How did the balloon car apply to each law?
1. it was at rest until the air
velocity
speed in a given direction""
kinetic energy
energy of motion""
potential energy
energy that is stored and held in readiness""
formula of speed
Distance/Time""
formula of distance
SpeedxTime
formula of time
Distance/Speed
How do you find average speed?
Add all speeds and divide by the number of speeds
How did the balloon car apply to each law?
1. it was at rest until the air, and at motion until friction slowed it down 2. force
ofballoontimes mass of car equals acceleration
How could you have made the Hot Wheels car faster?
make the ramp steeper, oil up the wheels, add weight to the car
How did the activities with the washers and pennies demonstrate Newtono's first law?
the pennies/washers stayed at rest even when we flicked away the card
How did the placement of the hills, curve, and loop on your roller coaster effec the ride of your
marble?
loop needed energy, so it went first - curve slowed it down at the end
How did you get the marble to stop before it reached the barrier?
We used the curve to slow it down and put a small upward hill at the end