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Newton’s Notions

Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

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Page 1: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

Newton’s Notions

Page 2: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

• A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds.• Then it goes 30 ft./sec. for the next 2 ½ seconds. • Next, its speed changes to 25 ft./sec. for 4 seconds.• And then it goes 40 ft./sec. for 3 ½ seconds to the finish line.

TASK #1: Make a table of the travel data and show how far the car should travel during each second of the journey.TASK #2: Make a line graph to show the distance traveled by the car during each second of its journey.

Consider this.

Page 3: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

Key Questions:

Answer these in order.• How far did the car travel during the first 3 seconds?• How far did the car travel during the next 2 ½ seconds?• How far did the car travel during the next 4 seconds?• How far did the car travel during the last 3 ½ seconds?• What was the total distance that the car traveled?• What was the total length of time that the car traveled?• What was the average speed for the car during the trip?• What does the steepness of the different parts of the line graph mean?

Page 4: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

TASK #1: Measure how long it takes a ball to roll 3 meters when released at the 100-cm. mark on the ramp.

TASK #2: Measure how long it takes a ball to roll from the 3-meter mark to the 6-meter mark when it is release at the 100-cm. mark on the ramp.

TASK #3: Measure how long it takes a ball to roll 3 meters when released at the 50-cm. mark on the ramp.

TASK #4: Measure how long it takes a ball to roll from the 3-meter mark to the 6-meter mark when it is release at the 50-cm. mark on the ramp.

Page 5: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

TimePeriod*

Total Time for this Period Distance fromthe Starting Point

Average Speed(From start to now)

1 5 seconds 25 meters

2 5 seconds 75 meters

3 5 seconds 175 meters

4 5 seconds 280 meters

5 5 seconds 350 meters

6* 10 seconds 420 meters

7 10 seconds 480 meters

8 10 seconds 500 meters

9 10 seconds 500 meters

10 10 seconds 500 meters

Distance that the Car Has Traveled at Different Times

Page 6: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

Distance from Home

Page 7: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

1. Look at the drawing to the right. Explain any forces that must be in the drawing. Tell whether the forces are balanced or unbalanced.

2. If the paper were pulled to the left slowly, tell what would happen and why. Tell if there are any balanced and unbalanced forces.

Page 8: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

Ball “A” is moving and Ball “B” is sitting still. Use your pencil to draw the motion of Ball “B” after the collision.

BA

Page 9: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

Ball “X” is moving and Ball “Y” is sitting still. Use your pencil to draw the motion of Ball “Y” after the collision.

YX

Page 10: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

The arrows below show two forces acting on a wagon at the same time. The amount of each force is shown next to each arrow.

Describe the resulting motion of the wagon. __________________________________

How would you describe these forces? ______________________________________

35 N. 70 N.

Page 11: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

PulleysDraw a pulley system that that two pulleys. One of the pulleys has three wheels and the other one has two wheels. Show the pulley system lifting a box that is 100 pounds. How hard should you have to pull to lift the 100-pound box? ________________

Page 12: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

This inclined plane is 4’ high and 16’ long. If the 100-lb. box has wheels, about how much force does it take to roll it up the plane?

Page 13: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

Simple Machine Type?

Page 14: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

Simple Machine Type?

Page 15: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

Simple Machine Type?

Page 16: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

Simple Machine Type?

Page 17: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

Simple Machine Type?

Page 18: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

Simple Machine Type?

Page 19: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

Simple Machine Type?

Page 20: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

Simple Machine Type?

Page 21: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

Simple Machine Type?

Page 22: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds

Simple Machine Type?

Page 23: Newton’s Notions. A car begins at the start line traveling at a speed of 20 feet/second for 3 seconds. Then it goes 30 ft./sec. for the next 2 ½ seconds