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Presentation transcript:

© Mark E. Damon - All Rights Reserved

Another Presentation © All rights Reserved

© Mark E. Damon - All Rights Reserved Directions: Scroll through the presentation and enter the answers (which are really the questions) and the questions (which are really the answers). Enter in the categories on the main game boards. As you play the game, click on the TEXT DOLLAR AMOUNT that the contestant calls, not the surrounding box. When they have given a question, click again anywhere on the screen to see the correct question. Keep track of which questions have already been picked by printing out the game board screen and checking off as you go. Click on the “Game” box to return to the main scoreboard. Enter the score into the black box on each players podium. Continue until all clues are given. When finished, DO NOT save the game. This will overwrite the program with the scores and data you enter. You MAY save it as a different name, but keep this file untouched!

© Mark E. Damon - All Rights Reserved Round 1Round 2 Final Jeopardy

© Mark E. Damon - All Rights Reserved Vocabulary Types of Simple Machines Using Simple Machines How Simple Machines Work Simple Machines Hodge- Podge BONUS: Moving Day $100 $200 $300 $400 $500 Round 2 Final Jeopardy Scores

© Mark E. Damon - All Rights Reserved $100 A machine with few or no moving parts that you apply just one force to (a) complex machine (b) simple machine (c) generator (d) compound machine A machine with few or no moving parts that you apply just one force to (a) complex machine (b) simple machine (c) generator (d) compound machine

© Mark E. Damon - All Rights Reserved $100 (b) simple machine Scores

© Mark E. Damon - All Rights Reserved $200 The fixed point on a lever (a) effort (b) fulcrum (c) load (d) arm The fixed point on a lever (a) effort (b) fulcrum (c) load (d) arm

© Mark E. Damon - All Rights Reserved $200 (b) fulcrum Scores

© Mark E. Damon - All Rights Reserved $300 The use of force to move an object over a distance (a) work (b) acceleration (c) velocity (d) inertia The use of force to move an object over a distance (a) work (b) acceleration (c) velocity (d) inertia

© Mark E. Damon - All Rights Reserved $300 (a) work Scores

© Mark E. Damon - All Rights Reserved $400 A simple machine made of a wheel and an axle that turn together (a) screw (b) pulley (c) wedge (d) wheel-and-axle A simple machine made of a wheel and an axle that turn together (a) screw (b) pulley (c) wedge (d) wheel-and-axle

© Mark E. Damon - All Rights Reserved $400 (d) wheel-and-axle Scores

© Mark E. Damon - All Rights Reserved $500 A simple machine that is a slanted surface (a) lever (b) wheel-and-axle (c) inclined plane (d) screw A simple machine that is a slanted surface (a) lever (b) wheel-and-axle (c) inclined plane (d) screw

© Mark E. Damon - All Rights Reserved $500 (c) inclined plane Scores

© Mark E. Damon - All Rights Reserved $100 A simple machine made of two inclined planes placed back-to- back (a) lever (b) pulley (c) fulcrum (d) wedge A simple machine made of two inclined planes placed back-to- back (a) lever (b) pulley (c) fulcrum (d) wedge

© Mark E. Damon - All Rights Reserved $100 (d) wedge Scores

© Mark E. Damon - All Rights Reserved $200 A simple machine made of a wheel with a line around it (a) wheel-and-axle (b) screw (c) inclined plane (d) pulley A simple machine made of a wheel with a line around it (a) wheel-and-axle (b) screw (c) inclined plane (d) pulley

© Mark E. Damon - All Rights Reserved $200 (d) pulley Scores

© Mark E. Damon - All Rights Reserved $300 A simple machine made of a bar that pivots on a fixed point (a)lever (b)inclined plane (c)wheel-and-axle (d)pulley A simple machine made of a bar that pivots on a fixed point (a)lever (b)inclined plane (c)wheel-and-axle (d)pulley

© Mark E. Damon - All Rights Reserved $300 (a) lever Scores

© Mark E. Damon - All Rights Reserved

$400 A simple machine made of a post with an inclined plane around it (a) wheel-and-axle (b) screw (c) pulley (d) wedge A simple machine made of a post with an inclined plane around it (a) wheel-and-axle (b) screw (c) pulley (d) wedge

© Mark E. Damon - All Rights Reserved $400 (b) screw Scores

© Mark E. Damon - All Rights Reserved $500 What must a wheel and an axle do to be a simple machine? (a) The wheel and the axle must turn together. (b) The wheel and the axle must decrease the work by half. (c) The axle must stay still while the wheel turns. (d) The wheel must have a fixed fulcrum. What must a wheel and an axle do to be a simple machine? (a) The wheel and the axle must turn together. (b) The wheel and the axle must decrease the work by half. (c) The axle must stay still while the wheel turns. (d) The wheel must have a fixed fulcrum.

© Mark E. Damon - All Rights Reserved $500 (a) The wheel and the axle must turn together. Scores

© Mark E. Damon - All Rights Reserved $100 Four scouts are doing different jobs at camp. Which scout is using a pulley? (a) Lizbeth pries open a can of fruit for breakfast. (b) Sara rolls a wheelbarrow of firewood to the campsite. (c) Katie raises the flag on the flagpole. (d) Tonya trims hedges with hedge clippers. Four scouts are doing different jobs at camp. Which scout is using a pulley? (a) Lizbeth pries open a can of fruit for breakfast. (b) Sara rolls a wheelbarrow of firewood to the campsite. (c) Katie raises the flag on the flagpole. (d) Tonya trims hedges with hedge clippers.

© Mark E. Damon - All Rights Reserved $100 (c) Katie raises the flag on the flagpole. Scores

© Mark E. Damon - All Rights Reserved $200 Which simple machine could you use to hold two objects together? (a) lever (b) pulley (c) screw (d) wheel-and-axle Which simple machine could you use to hold two objects together? (a) lever (b) pulley (c) screw (d) wheel-and-axle

© Mark E. Damon - All Rights Reserved $200 (c) screw Scores

© Mark E. Damon - All Rights Reserved $300 Which kind of simple machine is the wheelchair resting on? (a) inclined plane (b) lever (c) pulley (d) screw Which kind of simple machine is the wheelchair resting on? (a) inclined plane (b) lever (c) pulley (d) screw

© Mark E. Damon - All Rights Reserved $300 (a) inclined plane Scores

© Mark E. Damon - All Rights Reserved $400 How is the screwdriver being used in this picture? (a) as a lever (b) as a screw (c) as a pulley (d) as a wheel-and-axle How is the screwdriver being used in this picture? (a) as a lever (b) as a screw (c) as a pulley (d) as a wheel-and-axle

© Mark E. Damon - All Rights Reserved $400 (a) as a lever Scores

© Mark E. Damon - All Rights Reserved $500 Which kind of simple machine is the beater part of a mixer? (a) pulley (b) wheel-and-axle (c) pulley and lever (d) two pulleys Which kind of simple machine is the beater part of a mixer? (a) pulley (b) wheel-and-axle (c) pulley and lever (d) two pulleys

© Mark E. Damon - All Rights Reserved $500 (b) wheel-and-axle Scores

© Mark E. Damon - All Rights Reserved $100 A wedge is a simple machine. What other kind of simple machine do you need to make a wedge? (a) fulcrum (b) inclined plane (c) pulley (d) screw A wedge is a simple machine. What other kind of simple machine do you need to make a wedge? (a) fulcrum (b) inclined plane (c) pulley (d) screw

© Mark E. Damon - All Rights Reserved $100 (b) inclined plane Scores

© Mark E. Damon - All Rights Reserved $200 Which of the following does NOT change the direction of a force? (a) inclined plane (b) pulley (c) wedge (d) wheel-and-axle Which of the following does NOT change the direction of a force? (a) inclined plane (b) pulley (c) wedge (d) wheel-and-axle

© Mark E. Damon - All Rights Reserved $200 (d) wheel-and-axle Scores

© Mark E. Damon - All Rights Reserved $300 Screws have threads that are simple machines. What kind of machine are the threads on screws? (a) blades (b) fulcrums (c) inclined planes (d) wedges Screws have threads that are simple machines. What kind of machine are the threads on screws? (a) blades (b) fulcrums (c) inclined planes (d) wedges

© Mark E. Damon - All Rights Reserved $300 (c) inclined planes Scores

© Mark E. Damon - All Rights Reserved $400 Where can the fulcrum of a lever NOT be? (a) the end of the bar (b) the middle of the bar (c) between the middle and the end (d) not touching the bar Where can the fulcrum of a lever NOT be? (a) the end of the bar (b) the middle of the bar (c) between the middle and the end (d) not touching the bar

© Mark E. Damon - All Rights Reserved $400 (d) not touching the bar Scores

© Mark E. Damon - All Rights Reserved $500 Which detail about an ax lets you know that it is a wedge? (a) It has just one inclined plane. (b) It changes the way work is done. (c) It has two inclined planes. (d) It changes the direction of the force applied. Which detail about an ax lets you know that it is a wedge? (a) It has just one inclined plane. (b) It changes the way work is done. (c) It has two inclined planes. (d) It changes the direction of the force applied.

© Mark E. Damon - All Rights Reserved $500 (c) It has two inclined planes. Scores

© Mark E. Damon - All Rights Reserved $100 Scientists have a special meaning for work. Which one of these is an example of scientific work? (a) pushing on a door that won’t open (b) lifting a box off the floor (c) standing still with a backpack strapped to your back (d) reading a textbook Scientists have a special meaning for work. Which one of these is an example of scientific work? (a) pushing on a door that won’t open (b) lifting a box off the floor (c) standing still with a backpack strapped to your back (d) reading a textbook

© Mark E. Damon - All Rights Reserved $100 (b) lifting a box off the floor Scores

© Mark E. Damon - All Rights Reserved $200 Look at the labeled parts of the diagram. Which part shows a fulcrum? (a) Part A (b) Part B (c) Part C (d) Part D Look at the labeled parts of the diagram. Which part shows a fulcrum? (a) Part A (b) Part B (c) Part C (d) Part D

© Mark E. Damon - All Rights Reserved $200 (d) Part D Scores

© Mark E. Damon - All Rights Reserved $300 Which of the following is an example of work to a scientist? (a) solving a mental math problem (b) carrying a book across the room (c) pushing against the floor (d) lifting a chair off the floor Which of the following is an example of work to a scientist? (a) solving a mental math problem (b) carrying a book across the room (c) pushing against the floor (d) lifting a chair off the floor

© Mark E. Damon - All Rights Reserved $300 (d) lifting a chair off the floor Scores

© Mark E. Damon - All Rights Reserved $400 Which simple machine is shown in the diagram? (a) inclined plane (b) lever (c) pulley (d) wedge Which simple machine is shown in the diagram? (a) inclined plane (b) lever (c) pulley (d) wedge

© Mark E. Damon - All Rights Reserved $400 (b) lever Scores

© Mark E. Damon - All Rights Reserved $500

© Mark E. Damon - All Rights Reserved $500 Scores

© Mark E. Damon - All Rights Reserved $100 Moving Day A ramp is a kind of inclined plane. Recall what you know about inclined planes. A.Explain how the ramp changes the distance and the size of the force needed to move the load up into the truck. Moving Day A ramp is a kind of inclined plane. Recall what you know about inclined planes. A.Explain how the ramp changes the distance and the size of the force needed to move the load up into the truck.

© Mark E. Damon - All Rights Reserved $100 Scores Part A The ramp increases the distance but decreases the force needed to do the work.

© Mark E. Damon - All Rights Reserved $200 Moving Day A ramp is a kind of inclined plane. Recall what you know about inclined planes. B. You are moving a heavy box into the back of a truck. Would you rather use a steep ramp, a less-steep ramp, or a ladder? Explain your choice. Moving Day A ramp is a kind of inclined plane. Recall what you know about inclined planes. B. You are moving a heavy box into the back of a truck. Would you rather use a steep ramp, a less-steep ramp, or a ladder? Explain your choice.

© Mark E. Damon - All Rights Reserved $200 Part B I would rather use a less-steep ramp. Using a less-steep ramp to move the heavy box would require less effort (force), but you would move the box a greater distance. If I used a steep ramp, I would have to use more effort because I would be moving the box a shorter distance forward. If I used a ladder, I wouldn’t be going any distance forward, and I would have to carry the load straight up, which would be very hard. Scores

© Mark E. Damon - All Rights Reserved $300

© Mark E. Damon - All Rights Reserved $300 Scores

© Mark E. Damon - All Rights Reserved $400

© Mark E. Damon - All Rights Reserved $400 Scores

© Mark E. Damon - All Rights Reserved $500

© Mark E. Damon - All Rights Reserved $500 Scores

© Mark E. Damon - All Rights Reserved $200 $400 $600 $800 $1000 Round 1 Final Jeopardy Scores

© Mark E. Damon - All Rights Reserved

$1000

© Mark E. Damon - All Rights Reserved $1000 Scores

© Mark E. Damon - All Rights Reserved $200

© Mark E. Damon - All Rights Reserved $200 Scores

© Mark E. Damon - All Rights Reserved $400

© Mark E. Damon - All Rights Reserved $400 Scores

© Mark E. Damon - All Rights Reserved $600

© Mark E. Damon - All Rights Reserved $600 Scores

© Mark E. Damon - All Rights Reserved $800

© Mark E. Damon - All Rights Reserved $800 Scores

© Mark E. Damon - All Rights Reserved $1000

© Mark E. Damon - All Rights Reserved $1000 Scores

© Mark E. Damon - All Rights Reserved Scores Final Jeopardy Question

© Mark E. Damon - All Rights Reserved

Scores