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Newton’s Laws of Motion

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Presentation on theme: "Newton’s Laws of Motion"— Presentation transcript:

1 Newton’s Laws of Motion
Review Game I Part I Review Game Part I

2 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

3 How to play… Don’t play like Jeo_ _ _ _ y.
Class should be divided into several small groups. Groups should use science journal (red slide notes), homework, and other available materials to assist you. Groups can communicate quietly with each other but no sharing answers between groups. Practice quietly communicating right now? Practice Communication Question: Your group gets to order one pizza and you can have two toppings. What does your group want?

4 Final Category (Bonus) = 1pt Each Final Questions = 5 pt wager
Questions 1-20 = 5pts Each Final Category (Bonus) = 1pt Each Final Questions = 5 pt wager If you wager 5 on the last question and get it wrong you lose 5 pts. Wager 5 and get it right you get 5 pts. Find the Owl = Secretly write “Owl” in the correct box worth 1pt. “I’ll be about this big.”

5 Is your name on the review sheet?

6 Add the categories along the top on the next slide.
Is your name on the review sheet? Add the categories along the top on the next slide.

7 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

8 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

9 1 Energy is all of the following except… Homozygous
A.) Ability to do work. B.) To cause something to change to move or change directions. C.) Energy cannot be created or destroyed, but transferred from one form to another. D.) Energy quality is gained due to friction / force/ heat. -From low quality energy to high quality energy. E.) None of the above. Homozygous Copyright© 2010 Ryan P. Murphy

10 1 Energy is all of the following except… Homozygous
A.) The ability to do work. B.) To cause something to change to move or change directions. C.) Energy cannot be created or destroyed, but transferred from one form to another. D.) Energy quality is gained due to friction / force/ heat. -From low quality energy to high quality energy. E.) None of the above. Homozygous Copyright© 2010 Ryan P. Murphy

11 1 Energy is all of the following except… Homozygous
A.) The ability to do work. B.) To cause something to change to move or change directions. C.) Energy cannot be created or destroyed, but transferred from one form to another. D.) Energy quality is gained due to friction / force/ heat. -From low quality energy to high quality energy. E.) None of the above. Homozygous Copyright© 2010 Ryan P. Murphy

12 1 Energy is all of the following except… Homozygous
A.) The ability to do work. B.) To cause something to change to move or change directions. C.) Energy cannot be created or destroyed, but transferred from one form to another. D.) Energy quality is gained due to friction / force/ heat. -From low quality energy to high quality energy. E.) None of the above. Homozygous Copyright© 2010 Ryan P. Murphy

13 1 Energy is all of the following except… Homozygous
A.) The ability to do work. B.) To cause something to change to move or change directions. C.) Energy cannot be created or destroyed, but transferred from one form to another. D.) Energy quality is gained due to friction / force/ heat. -From low quality energy to high quality energy. E.) None of the above. Homozygous Copyright© 2010 Ryan P. Murphy

14 1 Energy is all of the following except… Homozygous
A.) The ability to do work. B.) To cause something to change to move or change directions. C.) Energy cannot be created or destroyed, but transferred from one form to another. D.) Energy quality is gained due to friction / force/ heat. -From low quality energy to high quality energy. E.) None of the above. Homozygous Copyright© 2010 Ryan P. Murphy

15 2 2 Please fill in the missing boxes below… Homozygous
An object at rest tends to stay at rest and an object in motion tends to stay in motion with the same speed and in the same direction unless acted upon by an unbalanced force. Homozygous 2 2 Copyright© 2010 Ryan P. Murphy

16 This is the name for the property of matter by which it retains its state of rest or its velocity along a straight line. So long as it’s not acted upon by an external force. 3

17 This is the point in a body at which the whole mass may be considered as concentrated.
4

18 True or False? Objects with similar air resistance fall at the same rate. Everything falls at the same rate of speed in a vacuum. 5

19 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

20 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

21 Name this type of friction?
6

22 Name this type of friction when two surfaces are not moving past each other.
7

23 Name this type of friction between a rolling object and the surface it rolls on?
8

24 This is the name for designed or arranged to offer the least resistance to fluid flow.
Purebreds cannot produce offspring. 9 Copyright© 2010 Ryan P. Murphy

25 10 Friction does all of the following except…
A.) Slows an object down until it stops. B.) Defy Inertia. C.) Wears object down. D.) Produces heat. 10 Copyright © 2010 Ryan P. Murphy

26 10 Friction does all of the following except…
A.) Slows an object down until it stops. B.) Defy Inertia. C.) Wears object down. D.) Produces heat. 10 Copyright © 2010 Ryan P. Murphy

27 10 Friction does all of the following except…
A.) Slows an object down until it stops. B.) Defy Inertia. C.) Wears object down. D.) Produces heat. 10 Copyright © 2010 Ryan P. Murphy

28 10 Friction does all of the following except…
A.) Slows an object down until it stops. B.) Defy Inertia. C.) Wears object down. D.) Produces heat. 10 Copyright © 2010 Ryan P. Murphy

29 10 Friction does all of the following except…
A.) Slows an object down until it stops. B.) Defy Inertia. C.) Wears object down. D.) Produces heat. 10 Copyright © 2010 Ryan P. Murphy

30 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

31 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

32 11 Fill in the blanks about Newton’s 2nd Law
The relationship between an object's mass m, its acceleration a, and the applied force F is… F=ma 11 Copyright © 2010 Ryan P. Murphy

33 12 Mass: Measured in kilograms (kg)
Acceleration: Rate at which an object changes its velocity (m/s²) Force: To cause motion or change. Newton: Amount needed to accelerate 1 kilogram of mass at the rate of 1 meter per second squared.

34 13 A tree limb fell on a house and the impact was 2,000 newtons.
The tree weighed 200 kg, how fast was it moving in m/s²? 13 Copyright © 2010 Ryan P. Murphy

35 A giraffes tongue has a mass of 1
A giraffes tongue has a mass of 1.25 kg and accelerates from its mouth to a speed of 3 m/s² before hitting the squirrel. What was the force of the tongue hitting the squirrel? 14 Copyright © 2010 Ryan P. Murphy

36 A giraffes tongue has a mass of 1
A giraffes tongue has a mass of 1.25 kg and accelerates from its mouth to a speed of 3 m/s² before hitting the squirrel. What was the force of the tongue hitting the squirrel? 14 Copyright © 2010 Ryan P. Murphy

37 A squirrel falling from a tree at a rate of 9
A squirrel falling from a tree at a rate of 9.8 m/s² hits the ground with a force of 4.9 newtons. How much did the squirrel weigh? 15 Copyright © 2010 Ryan P. Murphy

38 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

39 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

40 16 3rd Law For every action there’s an equal and opposite reaction.
Copyright © 2010 Ryan P. Murphy

41 17 Sir Isaac Newton lived… A.) 1954-2001 B.) 27 B.C to 41 A.D.
Copyright © 2010 Ryan P. Murphy

42 18 This means designed to move efficiently through the water.
Copyright © 2010 Ryan P. Murphy

43 Which of the two below will impact with the greatest force if they have the same acceleration?
19 Elephant Gopher Copyright © 2010 Ryan P. Murphy

44 Engine oil is very important to keep pistons lubricated
Engine oil is very important to keep pistons lubricated. This reduces friction and thus heat which can expand metal and cause damage. 20 Copyright © 2010 Ryan P. Murphy

45 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

46 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT LILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

47 *21 Who are these famous sister athletes?
Copyright © 2010 Ryan P. Murphy

48 What famous skier can be seen here?
Bode________ *22

49 Name this famous sprinter?
*23

50 *24 Who is this famous athlete who won Gold in Berlin?
Copyright © 2010 Ryan P. Murphy

51 25 Who is this? Copyright © 2010 Ryan P. Murphy

52 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25 Final Question

53 Copyright © 2010 Ryan P. Murphy

54 A squirrel traveling at 1
A squirrel traveling at 1.5 m/s² body checks another squirrel and the impact was 3 newtons. How much did the attacking squirrel weigh? Copyright © 2010 Ryan P. Murphy

55 Newton's Laws of Motion Review Game I Answer Key

56 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

57 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

58 1 Energy is all of the following except… Homozygous
A.) Ability to do work. B.) To cause something to change to move or change directions. C.) Energy cannot be created or destroyed, but transferred from one form to another. D.) Energy quality is gained due to friction / force/ heat. -From low quality energy to high quality energy. E.) None of the above. Homozygous Copyright© 2010 Ryan P. Murphy

59 1 Energy is all of the following except… Homozygous
A.) Ability to do work. B.) To cause something to change to move or change directions. C.) Energy cannot be created or destroyed, but transferred from one form to another. D.) Energy quality is gained due to friction / force/ heat. -From low quality energy to high quality energy. E.) None of the above. Homozygous Copyright© 2010 Ryan P. Murphy

60 1 Energy is all of the following except… Homozygous
A.) Ability to do work. B.) To cause something to change to move or change directions. C.) Energy cannot be created or destroyed, but transferred from one form to another. D.) Energy quality is gained due to friction / force/ heat. -From low quality energy to high quality energy. E.) None of the above. Homozygous Copyright© 2010 Ryan P. Murphy

61 1 Energy is all of the following except… Homozygous
A.) Ability to do work. B.) To cause something to change to move or change directions. C.) Energy cannot be created or destroyed, but transferred from one form to another. D.) Energy quality is gained due to friction / force/ heat. -From low quality energy to high quality energy. E.) None of the above. Homozygous Copyright© 2010 Ryan P. Murphy

62 1 Energy is all of the following except… Homozygous
A.) Ability to do work. B.) To cause something to change to move or change directions. C.) Energy cannot be created or destroyed, but transferred from one form to another. D.) Energy quality is gained due to friction / force/ heat. -From low quality energy to high quality energy. E.) None of the above. Homozygous Copyright© 2010 Ryan P. Murphy

63 1 Energy is all of the following except… Homozygous
A.) Ability to do work. B.) To cause something to change to move or change directions. C.) Energy cannot be created or destroyed, but transferred from one form to another. D.) Energy quality is gained due to friction / force/ heat. -From low quality energy to high quality energy. E.) None of the above. Homozygous Copyright© 2010 Ryan P. Murphy

64 1 and the answer is… Energy is all of the following except… Homozygous
A.) Ability to do work. B.) To cause something to change to move or change directions. C.) Energy cannot be created or destroyed, but transferred from one form to another. D.) Energy quality is gained due to friction / force/ heat. -From low quality energy to high quality energy. E.) None of the above. Homozygous and the answer is… Copyright© 2010 Ryan P. Murphy

65 1 and the answer is… Energy is all of the following except… Homozygous
A.) Ability to do work. B.) To cause something to change to move or change directions. C.) Energy cannot be created or destroyed, but transferred from one form to another. D.) Energy quality is gained due to friction / force/ heat. -From low quality energy to high quality energy. E.) None of the above. Homozygous and the answer is… Copyright© 2010 Ryan P. Murphy

66 1 and the answer is… Energy is all of the following except… Homozygous
A.) Ability to do work. B.) To cause something to change to move or change directions. C.) Energy cannot be created or destroyed, but transferred from one form to another. D.) Energy quality is lost due to friction / force/ heat. -From high quality energy to low quality energy. E.) None of the above. Homozygous and the answer is… Copyright© 2010 Ryan P. Murphy

67 2 2 Please fill in the missing boxes below… Homozygous
An object at rest tends to stay at rest and an object in motion tends to stay in motion with the same speed and in the same direction unless acted upon by an unbalanced force. Homozygous 2 2 Copyright© 2010 Ryan P. Murphy

68 2 2 Please fill in the missing boxes below… Homozygous
An object at rest tends to stay at rest and an object in motion tends to stay in motion with the same speed and in the same direction unless acted upon by an unbalanced force. Homozygous 2 2 Copyright© 2010 Ryan P. Murphy

69 2 2 Please fill in the missing boxes below… Homozygous
An object at rest tends to stay at rest and an object in motion tends to stay in motion with the same speed and in the same direction unless acted upon by an unbalanced force. Homozygous 2 2 Copyright© 2010 Ryan P. Murphy

70 2 2 Please fill in the missing boxes below… Homozygous
An object at rest tends to stay at rest and an object in motion tends to stay in motion with the same speed and in the same direction unless acted upon by an unbalanced force. Homozygous 2 2 Copyright© 2010 Ryan P. Murphy

71 2 2 Please fill in the missing boxes below… Homozygous
An object at rest tends to stay at rest and an object in motion tends to stay in motion with the same speed and in the same direction unless acted upon by an unbalanced force. Homozygous 2 2 Copyright© 2010 Ryan P. Murphy

72 2 2 Please fill in the missing boxes below… Homozygous
An object at rest tends to stay at rest and an object in motion tends to stay in motion with the same speed and in the same direction unless acted upon by an unbalanced force. Homozygous 2 2 Copyright© 2010 Ryan P. Murphy

73 2 2 Please fill in the missing boxes below… Homozygous
An object at rest tends to stay at rest and an object in motion tends to stay in motion with the same speed and in the same direction unless acted upon by an unbalanced force. Homozygous 2 2 Copyright© 2010 Ryan P. Murphy

74 This is the name for the property of matter by which it retains its state of rest or its velocity along a straight line. So long as it’s not acted upon by an external force. 3

75 This is the name for the property of matter by which it retains its state of rest or its velocity along a straight line. So long as it’s not acted upon by an external force. 3 Answer is…

76 This is the name for the property of matter by which it retains its state of rest or its velocity along a straight line. So long as it’s not acted upon by an external force. 3 Inertia Answer is…

77 This is the point in a body at which the whole mass may be considered as concentrated.
4

78 This is the point in a body at which the whole mass may be considered as concentrated.
4 and the answer is…

79 4 Center of Mass and the answer is…
This is the point in a body at which the whole mass may be considered as concentrated. Center of Mass 4 and the answer is…

80 4 Center of Mass also center of gravity if on earth and the answer is…
This is the point in a body at which the whole mass may be considered as concentrated. Center of Mass 4 also center of gravity if on earth and the answer is…

81 True or False? Objects with similar air resistance fall at the same rate. Everything falls at the same rate of speed in a vacuum. 5

82 5 answer is… True or False?
Objects with similar air resistance fall at the same rate. Everything falls at the same rate of speed in a vacuum. 5 answer is…

83 5 answer is… Galileo says… True or False?
Objects with similar air resistance fall at the same rate. Everything falls at the same rate of speed in a vacuum. 5 Galileo says… answer is…

84 5 answer is… Galileo says… “True” True or False?
Objects with similar air resistance fall at the same rate. Everything falls at the same rate of speed in a vacuum. 5 Galileo says… “True” answer is…

85 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

86 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

87 Name this type of friction?
6

88 Name this type of friction?
6 and the answer is…

89 Name this type of friction?
6 FLUID FRICTION and the answer is…

90 Name this type of friction when two surfaces are not moving past each other.
7

91 Name this type of friction when two surfaces are not moving past each other.
7 and the answer is…

92 7 Static Friction and the answer is…
Name this type of friction when two surfaces are not moving past each other. 7 Static Friction and the answer is…

93 Name this type of friction between a rolling object and the surface it rolls on?
8

94 Name this type of friction between a rolling object and the surface it rolls on?
8 and the answer is…

95 8 and the answer is… Rolling Friction
Name this type of friction between a rolling object and the surface it rolls on? 8 and the answer is… Rolling Friction

96 This is the name for designed or arranged to offer the least resistance to fluid flow.
Purebreds cannot produce offspring. 9 Copyright© 2010 Ryan P. Murphy

97 This is the name for designed or arranged to offer the least resistance to fluid flow.
Purebreds cannot produce offspring. 9 and the answer is… Copyright© 2010 Ryan P. Murphy

98 9 Aerodynamic and the answer is…
This is the name for designed or arranged to offer the least resistance to fluid flow. Purebreds cannot produce offspring. 9 Aerodynamic and the answer is… Copyright© 2010 Ryan P. Murphy

99 10 Friction does all of the following except…
A.) Slows an object down until it stops. B.) Defy Inertia. C.) Wears object down. D.) Produces heat. 10 Copyright © 2010 Ryan P. Murphy

100 10 Friction does all of the following except…
A.) Slows an object down until it stops. B.) Defy Inertia. C.) Wears object down. D.) Produces heat. 10 Copyright © 2010 Ryan P. Murphy

101 10 Friction does all of the following except…
A.) Slows an object down until it stops. B.) Defy Inertia. C.) Wears object down. D.) Produces heat. 10 Copyright © 2010 Ryan P. Murphy

102 10 Friction does all of the following except…
A.) Slows an object down until it stops. B.) Defy Inertia. C.) Wears object down. D.) Produces heat. 10 Copyright © 2010 Ryan P. Murphy

103 10 Friction does all of the following except…
A.) Slows an object down until it stops. B.) Defy Inertia. C.) Wears object down. D.) Produces heat. 10 Copyright © 2010 Ryan P. Murphy

104 10 answer is… Friction does all of the following except…
A.) Slows an object down until it stops. B.) Defy Inertia. C.) Wears object down. D.) Produces heat. 10 answer is… Copyright © 2010 Ryan P. Murphy

105 10 answer is… Friction does all of the following except…
A.) Slows an object down until it stops. B.) Defy Inertia. C.) Wears object down. D.) Produces heat. 10 answer is… Copyright © 2010 Ryan P. Murphy

106 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

107 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

108 11 Fill in the blanks about Newton’s 2nd Law
The relationship between an object's mass m, its acceleration a, and the applied force F is… F=ma 11 Copyright © 2010 Ryan P. Murphy

109 11 Fill in the blanks about Newton’s 2nd Law
The relationship between an object's mass m, its acceleration a, and the applied force F is… F=ma 11 Copyright © 2010 Ryan P. Murphy

110 11 Fill in the blanks about Newton’s 2nd Law
The relationship between an object's mass m, its acceleration a, and the applied force F is… F=ma 11 Copyright © 2010 Ryan P. Murphy

111 11 Fill in the blanks about Newton’s 2nd Law
The relationship between an object's mass m, its acceleration a, and the applied force F is… F=ma 11 Copyright © 2010 Ryan P. Murphy

112 11 Fill in the blanks about Newton’s 2nd Law
The relationship between an object's mass m, its acceleration a, and the applied force F is… F=ma 11 Copyright © 2010 Ryan P. Murphy

113 11 Fill in the blanks about Newton’s 2nd Law
The relationship between an object's mass m, its acceleration a, and the applied force F is… F=ma 11 Copyright © 2010 Ryan P. Murphy

114 11 Fill in the blanks about Newton’s 2nd Law
The relationship between an object's mass m, its acceleration a, and the applied force F is… F=ma 11 Copyright © 2010 Ryan P. Murphy

115 F=ma 11 Fill in the blanks about Newton’s 2nd Law
The relationship between an object's mass m, its acceleration a, and the applied force F is… F=ma F=ma 11 Copyright © 2010 Ryan P. Murphy

116 12 Mass: Measured in kilograms (kg)
Acceleration: Rate at which an object changes its velocity (m/s²) Force: To cause motion or change. Newton: Amount needed to accelerate 1 kilogram of mass at the rate of 1 meter per second squared.

117 12 Mass: Measured in kilograms (kg)
Acceleration: Rate at which an object changes its velocity (m/s²) Force: To cause motion or change. Newton: Amount needed to accelerate 1 kilogram of mass at the rate of 1 meter per second squared.

118 12 Mass: Measured in kilograms (kg)
Acceleration: Rate at which an object changes its velocity (m/s²) Force: To cause motion or change. Newton: Amount needed to accelerate 1 kilogram of mass at the rate of 1 meter per second squared.

119 12 Mass: Measured in kilograms (kg)
Acceleration: Rate at which an object changes its velocity (m/s²) Force: To cause motion or change. Newton: Amount needed to accelerate 1 kilogram of mass at the rate of 1 meter per second squared.

120 12 Mass: Measured in kilograms (kg)
Acceleration: Rate at which an object changes its velocity (m/s²) Force: To cause motion or change. Newton: Amount needed to accelerate 1 kilogram of mass at the rate of 1 meter per second squared.

121 12 Mass: Measured in kilograms (kg)
Acceleration: Rate at which an object changes its velocity (m/s²) Force: To cause motion or change. Newton: Amount needed to accelerate 1 kilogram of mass at the rate of 1 meter per second squared.

122 12 Mass: Measured in kilograms (kg)
Acceleration: Rate at which an object changes its velocity (m/s²) Force: To cause motion or change. Newton: Amount needed to accelerate 1 kilogram of mass at the rate of 1 meter per second squared.

123 F=ma 12 Mass: Measured in kilograms (kg)
Acceleration: Rate at which an object changes its velocity (m/s²) Force: To cause motion or change. Newton: Amount needed to accelerate 1 kilogram of mass at the rate of 1 meter per second squared. F=ma

124 13 A tree limb fell on a house and the impact was 2,000 newtons.
The tree weighed 200 kg, how fast was it moving in m/s²? 13 Copyright © 2010 Ryan P. Murphy

125 13 A tree limb fell on a house and the impact was 2,000 newtons.
The tree weighed 200 kg, how fast was it moving in m/s²? 13 Copyright © 2010 Ryan P. Murphy

126 13 A tree limb fell on a house and the impact was 2,000 newtons.
The tree weighed 200 kg, how fast was it moving in m/s²? 13 F=ma Copyright © 2010 Ryan P. Murphy

127 13 A tree limb fell on a house and the impact was 2,000 newtons.
The tree weighed 200 kg, how fast was it moving in m/s²? 13 F=ma Force 2,000 newtons m 200 kg a unknown Copyright © 2010 Ryan P. Murphy

128 13 A tree limb fell on a house and the impact was 2,000 newtons.
The tree weighed 200 kg, how fast was it moving in m/s²? 13 F=ma Force 2,000 newtons m 200 kg a unknown 2,000 N = 200 kg times X Copyright © 2010 Ryan P. Murphy

129 13 A tree limb fell on a house and the impact was 2,000 newtons.
The tree weighed 200 kg, how fast was it moving in m/s²? 13 F=ma Force 2,000 newtons m 200 kg a unknown 2,000 N = 200 kg times X Opposite of multiplying is dividing. Copyright © 2010 Ryan P. Murphy

130 13 A tree limb fell on a house and the impact was 2,000 newtons.
The tree weighed 200 kg, how fast was it moving in m/s²? 13 F=ma Force 2,000 newtons m 200 kg a unknown 2,000 N = 200 kg times X Opposite of multiplying is dividing. 2,000 N = X (m/s²) 200 kg Copyright © 2010 Ryan P. Murphy

131 13 A tree limb fell on a house and the impact was 2,000 newtons.
The tree weighed 200 kg, how fast was it moving in m/s²? 13 F=ma Force 2,000 newtons m 200 kg a unknown 2,000 N = 200 kg times X Opposite of multiplying is dividing. 2,000 N = X (m/s²) 200 kg X = Copyright © 2010 Ryan P. Murphy

132 13 A tree limb fell on a house and the impact was 2,000 newtons.
The tree weighed 200 kg, how fast was it moving in m/s²? 13 F=ma Force 2,000 newtons m 200 kg a unknown 2,000 N = 200 kg times X Opposite of multiplying is dividing. 2,000 N = X (m/s²) 200 kg X = 10 (m/s²) Copyright © 2010 Ryan P. Murphy

133 A giraffes tongue has a mass of 1
A giraffes tongue has a mass of 1.25 kg and accelerates from its mouth to a speed of 3 m/s² before hitting the squirrel. What was the force of the tongue hitting the squirrel? 14 Copyright © 2010 Ryan P. Murphy

134 A giraffes tongue has a mass of 1
A giraffes tongue has a mass of 1.25 kg and accelerates from its mouth to a speed of 3 m/s² before hitting the squirrel. What was the force of the tongue hitting the squirrel? 14 Copyright © 2010 Ryan P. Murphy

135 A giraffes tongue has a mass of 1
A giraffes tongue has a mass of 1.25 kg and accelerates from its mouth to a speed of 3 m/s² before hitting the squirrel. What was the force of the tongue hitting the squirrel? 14 Copyright © 2010 Ryan P. Murphy

136 A giraffes tongue has a mass of 1
A giraffes tongue has a mass of 1.25 kg and accelerates from its mouth to a speed of 3 m/s² before hitting the squirrel. What was the force of the tongue hitting the squirrel? 14 Copyright © 2010 Ryan P. Murphy

137 A giraffes tongue has a mass of 1
A giraffes tongue has a mass of 1.25 kg and accelerates from its mouth to a speed of 3 m/s² before hitting the squirrel. What was the force of the tongue hitting the squirrel? 14 Copyright © 2010 Ryan P. Murphy

138 A giraffes tongue has a mass of 1
A giraffes tongue has a mass of 1.25 kg and accelerates from its mouth to a speed of 3 m/s² before hitting the squirrel. What was the force of the tongue hitting the squirrel? 14 F = ma F = ? m = 1.25 kg a = 3 m/s² F ? = kg times 3 m/s² Force = Copyright © 2010 Ryan P. Murphy

139 A giraffes tongue has a mass of 1
A giraffes tongue has a mass of 1.25 kg and accelerates from its mouth to a speed of 3 m/s² before hitting the squirrel. What was the force of the tongue hitting the squirrel? 14 F = ma F = ? m = 1.25 kg a = 3 m/s² F ? = kg times 3 m/s² Force = 3.75 newtons Copyright © 2010 Ryan P. Murphy

140 A squirrel falling from a tree at a rate of 9
A squirrel falling from a tree at a rate of 9.8 m/s² hits the ground with a force of 4.9 newtons. How much did the squirrel weigh? 15 Copyright © 2010 Ryan P. Murphy

141 A squirrel falling from a tree at a rate of 9
A squirrel falling from a tree at a rate of 9.8 m/s² hits the ground with a force of 4.9 newtons. How much did the squirrel weigh? 15 Copyright © 2010 Ryan P. Murphy

142 A squirrel falling from a tree at a rate of 9
A squirrel falling from a tree at a rate of 9.8 m/s² hits the ground with a force of 4.9 newtons. How much did the squirrel weigh? 15 Copyright © 2010 Ryan P. Murphy

143 A squirrel falling from a tree at a rate of 9
A squirrel falling from a tree at a rate of 9.8 m/s² hits the ground with a force of 4.9 newtons. How much did the squirrel weigh? 15 F=ma Copyright © 2010 Ryan P. Murphy

144 A squirrel falling from a tree at a rate of 9
A squirrel falling from a tree at a rate of 9.8 m/s² hits the ground with a force of 4.9 newtons. How much did the squirrel weigh? 15 F=ma Force = 4.9 newtons m = unknown a = 9.8 m/s² Copyright © 2010 Ryan P. Murphy

145 A squirrel falling from a tree at a rate of 9
A squirrel falling from a tree at a rate of 9.8 m/s² hits the ground with a force of 4.9 newtons. How much did the squirrel weigh? 15 F=ma Force = 4.9 newtons m = unknown a = 9.8 m/s² 4.9 N = Unknown (kg) multiplied by 9.8 m/s² Copyright © 2010 Ryan P. Murphy

146 A squirrel falling from a tree at a rate of 9
A squirrel falling from a tree at a rate of 9.8 m/s² hits the ground with a force of 4.9 newtons. How much did the squirrel weigh? 15 F=ma Force = 4.9 newtons m = unknown a = 9.8 m/s² 4.9 N = Unknown (kg) multiplied by 9.8 m/s² Opposite of multiplying is dividing. Copyright © 2010 Ryan P. Murphy

147 A squirrel falling from a tree at a rate of 9
A squirrel falling from a tree at a rate of 9.8 m/s² hits the ground with a force of 4.9 newtons. How much did the squirrel weigh? 15 F=ma Force = 4.9 newtons m = unknown a = 9.8 m/s² 4.9 N = Unknown (kg) multiplied by 9.8 m/s² Opposite of multiplying is dividing. 4.9 N = X (kg) 9.8 m/s² Copyright © 2010 Ryan P. Murphy

148 A squirrel falling from a tree at a rate of 9
A squirrel falling from a tree at a rate of 9.8 m/s² hits the ground with a force of 4.9 newtons. How much did the squirrel weigh? 15 F=ma Force = 4.9 newtons m = unknown a = 9.8 m/s² 4.9 N = Unknown (kg) multiplied by 9.8 m/s² Opposite of multiplying is dividing. 4.9 N = X (kg) 9.8 m/s² X = Copyright © 2010 Ryan P. Murphy

149 A squirrel falling from a tree at a rate of 9
A squirrel falling from a tree at a rate of 9.8 m/s² hits the ground with a force of 4.9 newtons. How much did the squirrel weigh? 15 F=ma Force = 4.9 newtons m = unknown a = 9.8 m/s² 4.9 N = Unknown (kg) multiplied by 9.8 m/s² Opposite of multiplying is dividing. 4.9 N = X (kg) 9.8 m/s² X = .5 kg Copyright © 2010 Ryan P. Murphy

150 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

151 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

152 16 3rd Law For every action there’s an equal and opposite reaction.
Copyright © 2010 Ryan P. Murphy

153 16 3rd Law For every action there’s an equal and opposite reaction.
Copyright © 2010 Ryan P. Murphy

154 16 3rd Law For every action there’s an equal and opposite reaction.
Copyright © 2010 Ryan P. Murphy

155 17 Sir Isaac Newton lived… A.) 1954-2001 B.) 27 B.C to 41 A.D.
Copyright © 2010 Ryan P. Murphy

156 17 and the answer is… Sir Isaac Newton lived… A.) 1954-2001
B.) 27 B.C to 41 A.D. C.) D.) E.) 17 and the answer is… Copyright © 2010 Ryan P. Murphy

157 17 and the answer is… Sir Isaac Newton lived… A.) 1954-2001
B.) 27 B.C to 41 A.D. C.) D.) E.) 17 and the answer is… Copyright © 2010 Ryan P. Murphy

158 18 This means designed to move efficiently through the water.
Copyright © 2010 Ryan P. Murphy

159 This means designed to move efficiently through the water.
18 and the answer is… Copyright © 2010 Ryan P. Murphy

160 18 Hydrodynamic and the answer is…
This means designed to move efficiently through the water. 18 Hydrodynamic and the answer is… Copyright © 2010 Ryan P. Murphy

161 Which of the two below will impact with the greatest force if they have the same acceleration?
19 Elephant Gopher Copyright © 2010 Ryan P. Murphy

162 Which of the two below will impact with the greatest force if they have the same acceleration?
answer is… 19 Elephant Gopher Copyright © 2010 Ryan P. Murphy

163 Which of the two below will impact with the greatest force if they have the same acceleration?
19 Elephant Gopher Copyright © 2010 Ryan P. Murphy

164 Which of the two below will impact with the greatest force if they have the same acceleration?
19 I had more mass Elephant Gopher Copyright © 2010 Ryan P. Murphy

165 Engine oil is very important to keep pistons lubricated
Engine oil is very important to keep pistons lubricated. This reduces friction and thus heat which can expand metal and cause damage. 20 Copyright © 2010 Ryan P. Murphy

166 Engine oil is very important to keep pistons lubricated
Engine oil is very important to keep pistons lubricated. This reduces friction and thus heat which can expand metal and cause damage. 20 Copyright © 2010 Ryan P. Murphy

167 Engine oil is very important to keep pistons lubricated
Engine oil is very important to keep pistons lubricated. This reduces friction and thus heat which can expand metal and cause damage. 20 Copyright © 2010 Ryan P. Murphy

168 Engine oil is very important to keep pistons lubricated
Engine oil is very important to keep pistons lubricated. This reduces friction and thus heat which can expand metal and cause damage. 20 Copyright © 2010 Ryan P. Murphy

169 Engine oil is very important to keep pistons lubricated
Engine oil is very important to keep pistons lubricated. This reduces friction and thus heat which can expand metal and cause damage. 20 Copyright © 2010 Ryan P. Murphy

170 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

171 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT LILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25

172 *21 Who are these famous sister athletes?
Copyright © 2010 Ryan P. Murphy

173 *21 and the answer is… Who are these famous sister athletes?
Copyright © 2010 Ryan P. Murphy

174 *21 and the answer is… Who are these famous sister athletes?
Serena and Venus Williams *21 and the answer is… Copyright © 2010 Ryan P. Murphy

175 What famous skier can be seen here?
Bode________ *22

176 What famous skier can be seen here?
Bode________ Miller *22

177 Name this famous sprinter?
*23

178 Name this famous sprinter?
*23 and the answer is…

179 Name this famous sprinter?
*23 Usain Bolt and the answer is…

180 *24 Who is this famous athlete who won Gold in Berlin?
Copyright © 2010 Ryan P. Murphy

181 Who is this famous athlete who won Gold in Berlin?
*24 and the answer is… Copyright © 2010 Ryan P. Murphy

182 Who is this famous athlete who won Gold in Berlin?
*24 and the answer is… Copyright © 2010 Ryan P. Murphy

183 25 Who is this? Copyright © 2010 Ryan P. Murphy

184 25 Who is this? and the answer is… Copyright © 2010 Ryan P. Murphy

185 25 and the answer is… Who is this? Muhammad Ali
(born Cassius Marcellus Clay Jr.) and the answer is… Copyright © 2010 Ryan P. Murphy

186 Newton’s Laws of Motion Review Game MAY THE FORCE BE WITH YOU
LAZY BOY RUB A DUB DUB MAY THE FORCE BE WITH YOU 3rd TIMES A CHARM -Bonus- SPORT BILLY 1 6 11 16 *21 2 7 12 17 *22 3 8 13 18 *23 4 9 14 19 *24 5 10 15 20 *25 Final Question

187 Copyright © 2010 Ryan P. Murphy

188 A squirrel traveling at 1
A squirrel traveling at 1.5 m/s² body checks another squirrel and the impact was 3 newtons. How much did the attacking squirrel weigh? Copyright © 2010 Ryan P. Murphy

189 A squirrel traveling at 1
A squirrel traveling at 1.5 m/s² body checks another squirrel and the impact was 3 newtons. How much did the attacking squirrel weigh? Copyright © 2010 Ryan P. Murphy

190 A squirrel traveling at 1
A squirrel traveling at 1.5 m/s² body checks another squirrel and the impact was 3 newtons. How much did the attacking squirrel weigh? F=ma Copyright © 2010 Ryan P. Murphy

191 A squirrel traveling at 1
A squirrel traveling at 1.5 m/s² body checks another squirrel and the impact was 3 newtons. How much did the attacking squirrel weigh? F=ma Force = 3 newtons m = unknown a = 1.5 m/s² Copyright © 2010 Ryan P. Murphy

192 A squirrel traveling at 1
A squirrel traveling at 1.5 m/s² body checks another squirrel and the impact was 3 newtons. How much did the attacking squirrel weigh? F=ma Force = 3 newtons m = unknown a = 1.5 m/s² 3 N = Unknown (kg) multiplied by 1.5 m/s² Copyright © 2010 Ryan P. Murphy

193 A squirrel traveling at 1
A squirrel traveling at 1.5 m/s² body checks another squirrel and the impact was 3 newtons. How much did the attacking squirrel weigh? F=ma Force = 3 newtons m = unknown a = 1.5 m/s² 3 N = Unknown (kg) multiplied by 1.5 m/s² Opposite of multiplying is dividing. Copyright © 2010 Ryan P. Murphy

194 A squirrel traveling at 1
A squirrel traveling at 1.5 m/s² body checks another squirrel and the impact was 3 newtons. How much did the attacking squirrel weigh? F=ma Force = 3 newtons m = unknown a = 1.5 m/s² 3 N = Unknown (kg) multiplied by 1.5 m/s² Opposite of multiplying is dividing. 3 N = X (kg) 1.5 m/s² Copyright © 2010 Ryan P. Murphy

195 A squirrel traveling at 1
A squirrel traveling at 1.5 m/s² body checks another squirrel and the impact was 3 newtons. How much did the attacking squirrel weigh? F=ma Force = 3 newtons m = unknown a = 1.5 m/s² 3 N = Unknown (kg) multiplied by 1.5 m/s² Opposite of multiplying is dividing. 3 N = X (kg) 1.5 m/s² X = Copyright © 2010 Ryan P. Murphy

196 A squirrel traveling at 1
A squirrel traveling at 1.5 m/s² body checks another squirrel and the impact was 3 newtons. How much did the attacking squirrel weigh? F=ma Force = 3 newtons m = unknown a = 1.5 m/s² 3 N = Unknown (kg) multiplied by 1.5 m/s² Opposite of multiplying is dividing. 3 N = X (kg) 1.5 m/s² X = 2 kg Copyright © 2010 Ryan P. Murphy

197 Newton’s Laws of Motion Part I Review Game 1-20 = 5 points each
20-25 = Bonus (1 point each) Final Question = 5 point wager Find the Owl = point

198 Newton’s Laws of Motion
Review Game I Part I Review Game Part I

199 Physical Science Curriculum
Physical Science Curriculum Link Newton's Laws of Motion, Forces in Motion and Simple Machines Unit Laws of Motion and Simple Machines Unit Preview Link Matter, Energy, and the Environment Unit Matter, Energy, and the Environment Unit Preview Atoms and Periodic Table of the Elements Unit on TpT Atoms and Periodic Table of the Elements Unit Preview Link Science Skills Unit on TpT Science Skills Unit Preview Link

200 Laws of Motion and Simple Machines Unit

201 Laws of Motion and Simple Machines Unit

202 Laws of Motion and Simple Machines Unit
Areas of Focus within The Motion and Machines Unit: Newton’s First Law, Inertia, Friction, Four Types of Friction, Negatives and Positives of Friction, Newton’s Third Law, Newton’s Second Law, Potential Energy, Kinetic Energy, Mechanical Energy, Forms of Potential to Kinetic Energy, Speed, Velocity, Acceleration, Deceleration, Momentum, Work, Machines (Joules), Catapults, Trajectory, Force, Simple Machines, Pulley / (MA Mechanical Advantage), Lever / (MA), Wedge / (MA), Wheel and Axle (MA), Inclined Plane / (MA), Screw / (MA) - Mousetrap Cars. Newton's Laws of Motion, Forces in Motion and Simple Machines Unit Hundreds of PowerPoint previews, the bundled homework package, unit notes, and much more can be previewed at… Laws of Motion and Simple Machines Unit Preview Link

203 Links Laws of Motion and Simple Machines Unit
Areas of Focus within The Motion and Machines Unit: Newton’s First Law, Inertia, Friction, Four Types of Friction, Negatives and Positives of Friction, Newton’s Third Law, Newton’s Second Law, Potential Energy, Kinetic Energy, Mechanical Energy, Forms of Potential to Kinetic Energy, Speed, Velocity, Acceleration, Deceleration, Momentum, Work, Machines (Joules), Catapults, Trajectory, Force, Simple Machines, Pulley / (MA Mechanical Advantage), Lever / (MA), Wedge / (MA), Wheel and Axle (MA), Inclined Plane / (MA), Screw / (MA) - Mousetrap Cars. Newton's Three Laws of Motion Newton's Laws of Motion Review Game Friction Lesson, Types of Friction Kinetic and Potential Energy Lesson Newton's Laws and Forces in Motion Forces in Motion Review Game Catapults and Trajectory Lesson Simple Machines Lesson Simple Machines Review Game Laws of Motion and Simple Machines Unit Flashcards Laws of Motion and Simple Machines Crossword Puzzle Laws of Motion, Forces in Motion, Simple Machines Unit Preview, Homework, Notes Links

204

205

206 NGSS Standards HS

207 Additional Standards Addressed

208 Life Science Curriculum Link
Physical Science Curriculum Link Earth Science Curriculum Link

209

210

211 Earth Science Curriculum
Earth Science Curriculum Link Earth Science Units Purchase Individual Unit Link on TpT Geology Topics Unit Geology Unit on TpT Astronomy Topics Unit Astronomy Unit on TpT Weather and Climate Unit Weather and Climate Unit on TpT Soil Science, Weathering, More Weathering, Soil Science, Ice-Ages, Glaciers Unit on TpT Water Unit Water Unit on TpT Rivers Unit Rivers, Lakes, and Water Quality Unit on TpT

212 Life Science Curriculum
Life Science Curriculum Link Life Science Units Purchase Individual Unit Link on TpT DNA and Genetics Unit DNA and Genetics Unit on TpT Cell Biology Unit Cell Biology Unit on TpT Infectious Diseases Unit Virus, Bacteria, Parasites, Diseases Unit Taxonomy and Classification Unit Evolution / Natural Selection Unit Evolution and Natural Selection Unit on TpT Botany Topics Unit Botany Unit Ecology Feeding Levels Unit Ecology Feeding Levels Unit on TpT Ecology Interactions Unit Ecology Interactions Unit on TpT Ecology Abiotic Factors Unit Ecology Abiotic Factors Unit on TpT Anatomy, Human Body Systems Human Body Systems and Health Topics Unit

213 Physical Science Curriculum
Physical Science Units Purchase Individual Unit Link on TpT Science Skills Unit Science Skills Unit on TpT Motion and Machines Unit Newton's Laws of Motion, Forces in Motion and Simple Machines Unit Matter, Energy, Envs. Unit Matter, Energy, and the Environment Unit Atoms and Periodic Table Unit Atoms and Periodic Table of the Elements Unit on TpT Physical Science Curriculum Link

214 Follow my TpT store, get notifications about flash freebies, curriculum updates, great classroom ideas, pins, and much more by following me on Facebook , Twitter, and Pinterest.

215 Curriculum Tour Link (190mb)
Thank you for your time and interest in this curriculum. The link above will take you to my curriculum tour that includes many PowerPoint previews, unit notes, bundled homework packages, curriculum information and much more. Please feel free to contact me with questions. Thanks again and best wishes. Sincerely, Ryan Murphy M.Ed

216 Science Curriculum TpT Link
sciencepowerpoint.com


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