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2nd Semester Final Exam Review

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PHYSICS BINGO 2nd Semester Final Exam Review Rules for Bingo Answer the problem presented. Locate and mark the corresponding answer on your board. – PowerPoint PPT presentation

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Title: 2nd Semester Final Exam Review


1
Physics Bingo
  • 2nd Semester Final Exam Review

2
Rules for Bingo
  • Answer the problem presented.
  • Locate and mark the corresponding answer on your
    board.
  • You must get 5 across, down or diagonal to win.
  • 1st person to call BINGO each round will win some
    candy!

3
Problem 1
  • Acceleration is a change in this..

4
Problem 2
  • A car starts from rest and reaches 33m/s in 11
    seconds.
  • Calculate the acceleration.

5
PROBLEM 3
  • If you were given a v-t graph, you would need to
    calculate this to find acceleration.

6
PROBLEM 4
  • The ONLY force that acts on a projectile is

7
PROBLEM 5
  • If an object has a Vx of 5m/s and is in the air
    for 7 seconds, this is the horizontal range of
    the projectile.

8
PROBLEM 6
  • What type of force is also the weight of the
    object?

9
PROBLEM 7
  • Which of Newtons laws states that for every
    action there is an equal but opposite reaction.

10
PROBLEM 8
  • Two objects (A and B) of the same mass are
    pushed. Object A is pushed with 15N of force and
    Object B is pushed with 6N. Which experiences
    more acceleration?

11
PROBLEM 9
  • This type of energy exists when friction or an
    impact occurs.

12
PROBLEM 10
  • What is the unit for
  • energy?

13
PROBLEM 11
  • According to the 2nd law, if you increase the
    mass of an object and keep the Fnet the same,
    the acceleration ___________________.

14
PROBLEM 12
  • The k-value in the elastic energy equation
    tells you about the ___________ of the spring.

15
PROBLEM 13
  • A pencil rolls off a students desk. It takes
    0.4 seconds for it to hit the ground. What is
    the height of the desk?

16
PROBLEM 14
  • Calculate the kinetic energy of a stock car that
    has a mass of 1545kg and is moving with a
    velocity of 57 m/s.

17
PROBLEM 15
  • The slope on a _____-time graph will give you the
    velocity of the object.

18
PROBLEM 16
  • The last two-digits of the year Mrs. Henk
    graduated high school and the number for her
    favorite NASCAR driver is ___________.

19
PROBLEM 17
  • If an object is going forward and slowing down,
    this is the sign for the acceleration.

20
PROBLEM 18
  • Lance Armstrong is training for the Tour de
    France. He accelerates his bike from rest to 50
    m/s in 13 seconds.
  • Determine his displacement during this time.

21
PROBLEM 19
  • A high school track and field athlete prepares
    to throw a shot put. If the mass of the shot is
    5.45 kg.
  • If the athlete applies 16N of force on the shot
    put ball, how much acceleration does it
    experience?

22
PROBLELM 20
  • This type of force is often referred to as a
    support force.
  • It is always perpendicular to the surface that
    the object is resting on.

23
PROBLEM 21
  • At the tallest spot on a roller coaster, the
    riders experience the most of this type of
    energy.

24
PROBLEM 22
  • Calculate the gravitational energy for a 57kg
    passenger on a plane that is 10,500 meters off of
    the ground.

25
PROBLEM 23
  • This is the only type of energy that we studied
    that does not have its own specific equation.

26
PROBLEM 24
  • A baseball is hit upward. If it reaches a height
    (d) of 14m, how much time is it in the air?

27
PROBLEM 25
  • Which of Newtons laws states that objects in
    motion and objects at rest will stay in the same
    state unless they experience a net force greater
    than zero?

28
PROBLEM 26
  • A ______ is a push or a pull.

29
PROBLEM 27
  • The trig function that you use when the side you
    are solving for is adjacent to the angle is.

30
PROBLEM 28
  • The 1st car Mrs. Henk owned was a ___________.

31
PROBLEM 29
  • When a string, rope or wire is stretched, the
    type of force is called ____________.

32
PROBLEM 30
  • The law that allows us to calculate the amount of
    force between charges is called
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