QUESTION IMAGE
Question
- when something moves fast, it has energy
a. low b. no c. high d. tiny
part b - medium (applying & analyzing)
- you drop two balls, one big and one small. which one has more potential energy?
a. the big ball b. the small ball c. both the same d. neither
- you lift a rock higher. what happens to its potential energy?
a. goes down b. goes up c. stays the same d. disappears
- you roll a ball faster. what happens to its kinetic energy?
a. it grows b. it stops c. it sleeps d. it disappears
- when a ball hits the ground, energy is
a. created b. changed c. lost d. eaten
- you drop a marble from a tall chair and a short chair. which makes a deeper mark in
clay?
a. the tall one b. the short one c. both same d. none
- when a swing goes up, it has more energy
a. kinetic b. potential c. sound d. light
- when the swing goes down, it has more energy
a. sound b. potential c. kinetic d. color
- a snowball rolling down a hill shows energy
a. stored b. kinetic c. sound d. heat
- you push a toy car gently. it moves slowly. you push harder - it moves fast. what
changed?
a. its shape b. its energy c. its color d. its name
- a ball on a high shelf and a ball on the floor - which has more stored energy?
a. the shelf ball b. the floor ball c. both same d. neither
- when you catch a moving ball, what happens to its energy?
a. it goes into your hands b. it disappears c. it flies away d. it changes color
- if a marble is heavy, it has potential energy than a light one at the same
height.
a. less b. more c. none d. equal
- a child runs faster than another. who has more kinetic energy?
a. the slower child b. the faster child c. both same d. none
- you hold a ball high, then drop it. what happens first?
a. it gains kinetic energy b. it stops c. it flies up d. it disappears
- when you climb up stairs, your energy increases
a. kinetic b. potential c. sound d. heat
- when a ball bounces back up, it changes
a. direction b. shape c. name d. color
- a roller coaster at the top of a hill has a lot of energy
a. potential b. sound c. light d. air
- when it moves down the hill, the energy becomes
a. potential b. kinetic c. light d. sound
- a rock sitting on a mountain has energy waiting to move.
a. potential b. kinetic c. sound d. color
- when it falls, the rocks energy changes from to
a. potential to kinetic b. kinetic to light c. sound to heat d. none to some
- Potential energy is related to mass and height. When dropped from the same height, the big ball has more mass, so more potential energy.
- The formula for gravitational potential energy is \(U = mgh\) (where \(m\) is mass, \(g\) is gravitational acceleration, \(h\) is height). Lifting a rock higher (\(h\) increases), so potential energy goes up.
- Kinetic energy formula is \(K=\frac{1}{2}mv^{2}\) (\(m\) is mass, \(v\) is velocity). Rolling a ball faster (\(v\) increases), so kinetic energy grows.
- When a ball hits the ground, energy is conserved but changes form (e.g., from kinetic to elastic and thermal), so it is changed.
- The marble from the tall chair has more potential energy (higher \(h\) in \(U = mgh\)), so makes a deeper mark.
- When a swing goes up, height (\(h\)) increases, so potential energy (related to \(h\) in \(U = mgh\)) increases.
- When a swing goes down, velocity (\(v\)) increases (kinetic energy \(K=\frac{1}{2}mv^{2}\) depends on \(v\)), so kinetic energy increases.
- A snowball rolling down a hill is in motion (has velocity \(v\)), so shows kinetic energy (\(K=\frac{1}{2}mv^{2}\)).
- Pushing harder makes the toy car move faster (velocity \(v\) changes), so its energy (kinetic energy \(K=\frac{1}{2}mv^{2}\) as \(v\) changes) changes.
- A ball on a high shelf has higher \(h\) in \(U = mgh\), so more stored (potential) energy.
- When you catch a moving ball, its energy is transferred (e.g., to your hands as thermal and elastic energy), so it goes into your hands.
- Using \(U = mgh\), at the same \(h\), a heavier (more \(m\)) marble has more potential energy.
- Kinetic energy \(K=\frac{1}{2}mv^{2}\), faster (\(v\) is larger) child has more kinetic energy (assuming similar mass).
- When you drop a ball, first it starts to move (gain velocity \(v\)), so gains kinetic energy (\(K=\frac{1}{2}mv^{2}\)).
- Climbing stairs increases height (\(h\)), so potential energy (\(U = mgh\)) increases.
- When a ball bounces back up, its direction of motion changes.
- A roller - coaster at the top of a hill has high \(h\), so a lot of potential energy (\(U = mgh\)).
- Moving down the hill, velocity (\(v\)) increases, so energy becomes kinetic (\(K=\frac{1}{2}mv^{2}\)).
- A rock sitting on a mountain has potential energy (due to height \(h\) in \(U = mgh\)) waiting to move.
- A falling rock: initially has potential energy (due to \(h\)), then as it falls, \(v\) increases, so changes from potential to kinetic.
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