15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Welcome.

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$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Welcome to Who Wants to be a Millionaire 50:50

© Mark E. Damon - All Rights Reserved Another Presentation © All rights Reserved

© Mark E. Damon - All Rights Reserved

$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

© Mark E. Damon - All Rights Reserved A: Friction C: Magnetism B: A Push D: Gravity 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 The car rolls quickly down the ramp due to the force of- D: Gravity

© Mark E. Damon - All Rights Reserved $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

© Mark E. Damon - All Rights Reserved A: Gravity and Friction C: Compression B: Gravity and similar poles of a magnet D: Gravity and opposite poles of a magnet 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Which forces below are considered pulls? D: Gravity and opposite poles of a magnet

© Mark E. Damon - All Rights Reserved $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

© Mark E. Damon - All Rights Reserved A: A Force C: A Motion B: A conductor D: Density 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 What starts an object moving or stops an object if its already moving? A: A Force

© Mark E. Damon - All Rights Reserved $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

© Mark E. Damon - All Rights Reserved A: the pushing force C: the pulling force of gravity B: a lifting force D: a magnetic force 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 What would cause the balls to move down the ramps? C: the pulling force of gravity

© Mark E. Damon - All Rights Reserved $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

© Mark E. Damon - All Rights Reserved A.A pull against something that tears it apart. C: A push or pull that causes an object to move, stop, or change direction B: A solid mass that makes things change direction when hit from the side D. A push against something that makes it fall over. 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 What is a force? C: A push or pull that causes an object to move, stop, or change direction

© Mark E. Damon - All Rights Reserved Congratulations! You’ve Reached the $1,000 Milestone! Congratulations! C o n g r a t u l a t i o n s !

© Mark E. Damon - All Rights Reserved $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

© Mark E. Damon - All Rights Reserved A: pushing force C: the force of gravity will counteract the magnetism B: there are no forces at work D: pulling force 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 The magnets in the above experiment, as set up, will demonstrate a- D: pulling force

© Mark E. Damon - All Rights Reserved $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

© Mark E. Damon - All Rights Reserved A: Friction C: Electric Current B: Magnetism D: Gravity 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 What force causes to move down the ramp? D: Gravity

© Mark E. Damon - All Rights Reserved $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

© Mark E. Damon - All Rights Reserved A: Gravity C: Friction B: Magnetism D: Electric Current 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 The box stops about halfway down the ramp. What caused the box to stop sliding? C: Friction

© Mark E. Damon - All Rights Reserved $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

© Mark E. Damon - All Rights Reserved A: A force must be applied C: Gravity must be applied B: Inertia must be applied D: Friction must be applied 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 All ten bowling pins are standing at the end of the alley. What must happen to make them move? A: A force must be applied

© Mark E. Damon - All Rights Reserved $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

© Mark E. Damon - All Rights Reserved A: Friction C: Gravity B: Magnetism D: Inertia 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 The force that opposes motion when two surfaces are rubbing against each other- A: Friction

© Mark E. Damon - All Rights Reserved Congratulations! You’ve Reached the $32,000 Milestone! Congratulations! C o n g r a t u l a t i o n s !

© Mark E. Damon - All Rights Reserved $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

© Mark E. Damon - All Rights Reserved A: Submerge each magnet in water. C: Find the mass of each magnet. B: Count how many paper clips each magnet can pick up. D:Measure the length of each magnet. 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 How might you test the strength of several different types of magnets? B: Count how many paper clips each magnet can pick up.

© Mark E. Damon - All Rights Reserved $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

© Mark E. Damon - All Rights Reserved A: Inertia C: Gravity B: Friction D: Vibration 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Look at the drawing shown. The boy just dropped a ball. What force is pulling the ball to the ground? C: Gravity

© Mark E. Damon - All Rights Reserved $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

© Mark E. Damon - All Rights Reserved A: Spring scale and hot plate C: Balance and meter stick B: Graduated cylinder and beaker D: Magnet and thermometer 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Which two tools would be most useful in testing how the mass of an object can affect the distance it moves with a push? C: Balance and meter stick

© Mark E. Damon - All Rights Reserved $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

© Mark E. Damon - All Rights Reserved A: The total of their masses is greater C: The force of magnetism is greater B: The distance between them is greater D: Friction between them is greater 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 The force of gravitation between two objects is less when- B: The distance between them is greater

© Mark E. Damon - All Rights Reserved $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

© Mark E. Damon - All Rights Reserved A: The amount of wind pushing the balls C: The mass of the balls being pushed by air B: The length of the surface on which the balls roll D: The temperature of the air pushing the balls 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 A student investigated the effects of mass on the distance a ball can be pushed by air from a one-speed fan. What is the variable in this investigation? C: The mass of the balls being pushed by air

© Mark E. Damon - All Rights Reserved YOU WIN $1 MILLION DOLLARS!