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1D Kinematics Quiz

Authored by Leroy Brooks

Physics

11th - 12th Grade

CCSS covered

Used 19+ times

1D Kinematics Quiz
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25 questions

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1.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

A feather is dropped on the moon from a height of 1.40 meters. The acceleration of gravity on the moon is 1.67 m/s2. Determine the time for the feather to fall to the surface of the moon.

Which number represents time?

t = 1.40m

t = 1.67m/s2

t = 0m/s

t = ?

Tags

NGSS.HS-PS2-1

2.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

A feather is dropped on the moon from a height of 1.40 meters. The acceleration of gravity on the moon is 1.67 m/s2. Determine the time for the feather to fall to the surface of the moon.

Which number represents acceleration?

a = 1.40m

a= 1.67m/s2

a = 0m/s

a= ?

Tags

NGSS.HS-PS2-1

3.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

A feather is dropped on the moon from a height of 1.40 meters. The acceleration of gravity on the moon is 1.67 m/s2. Determine the time for the feather to fall to the surface of the moon.

Which number represents initial velocity?

v0 = 1.40m

v0= 1.67m/s2

v0 = 0m/s

v0= ?

Tags

NGSS.HS-PS2-1

4.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

A feather is dropped on the moon from a height of 1.40 meters. The acceleration of gravity on the moon is 1.67 m/s2. Determine the time for the feather to fall to the surface of the moon.

Which number represents displacement?

Δx= 1.40m

Δx= 1.67m/s2

Δx = 0m/s

Δx= ?

5.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

A feather is dropped on the moon from a height of 1.40 meters. The acceleration of gravity on the moon is 1.67 m/s2. Determine the time for the feather to fall to the surface of the moon.

Which equation should you use to solve the above problem?

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6.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

A car traveling at 22.4 m/s skids to a stop in 2.55 s. Determine the skidding distance of the car (assume uniform acceleration).

Which equation should you use to solve the above problem?

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7.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

A bike accelerates uniformly from rest to a speed of 7.10 m/s over a distance of 35.4 m. Determine the acceleration of the bike.

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