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An arrow that is pulled back by a bow has which type of energy?
true
elastic potential
PE=mgh
mass and velocity
both will land at the same time
false
Height, mass and gravitational strength
Newton’s first law of motion for objects in motion.
Any time the forces are unbalanced, an object will remain at rest. True or false?
true
elastic potential
PE=mgh
mass and velocity
both will land at the same time
false
Height, mass and gravitational strength
Newton’s first law of motion for objects in motion.
A greater applied force is required to move an object with a greater mass than one with a smaller mass.
true
elastic potential
PE=mgh
mass and velocity
both will land at the same time
false
Height, mass and gravitational strength
Newton’s first law of motion for objects in motion.
If a baseball and a cannonball are dropped from the same height at the same time, which ball will hit the ground first?
true
elastic potential
PE=mgh
mass and velocity
both will land at the same time
false
Height, mass and gravitational strength
Newton’s first law of motion for objects in motion.
A sled sliding on a flat, icy surface with a constant velocity is best described by
true
elastic potential
PE=mgh
mass and velocity
both will land at the same time
false
Height, mass and gravitational strength
Newton’s first law of motion for objects in motion.
The two factors that determine kinetic energy are ____________________________ ____________________________.
true
elastic potential
PE=mgh
mass and velocity
both will land at the same time
false
Height, mass and gravitational strength
Newton’s first law of motion for objects in motion.
Gravitational potential energy depends on the ________ and ________ of the object.
true
elastic potential
PE=mgh
mass and velocity
both will land at the same time
false
Height, mass and gravitational strength
Newton’s first law of motion for objects in motion.
The formula for calculating potential energy is ____________________________.
true
elastic potential
PE=mgh
mass and velocity
both will land at the same time
false
Height, mass and gravitational strength
Newton’s first law of motion for objects in motion.
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