Warm Up. Constant Velocity CONSTANT VELOCITY = NO CHANGE IN VELOCITY Definition of acceleration =...

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Warm Up

Transcript of Warm Up. Constant Velocity CONSTANT VELOCITY = NO CHANGE IN VELOCITY Definition of acceleration =...

Page 1: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Warm Up

Page 2: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Constant Velocity

CONSTANT VELOCITY = NO CHANGE IN VELOCITY

Definition of acceleration = CHANGE IN VELOCITY over a period of time

CONSTANT VELOCITY = 0 ACCLERATION

Page 3: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Position/Time and Velocity/Time

The graph to the right shows the velocity graph for the position graph to the left.

Page 4: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Position vs. Time Graphs

Curved line = changing velocity

Accelerated motion

Page 5: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Velocity vs. Time Graphs

Straight line = velocity changing at a constant rate

Constant acceleration

Page 6: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Velocity vs. Time Graphs

What is in a velocity vs. time graph? X-axis: time (s) that the object is in

motion Y-axis: velocity (m/s) of the object in

motionSLOPE =

ACCELERATION of the

object

Page 7: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Velocity vs. Time Graphs

Slope = rise = Δv run Δt = How much your VELOCITY is

changing

How much your time is changing

= ∆v = acceleration!

∆t

SLOPE OF V vs T graph EQUALS ACCELERATION!!!

Page 8: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Between which letters is velocity increasing? Between which letters is velocity decreasing? Between which letters is velocity constant? Is there anywhere that the object is not

moving? Does the object change direction?

Page 9: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

When velocity increases, the acceleration is:

When the velocity decreases, the acceleration is:

When the velocity remains constant, the acceleration is:

Page 10: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

MOTION DIAGRAM

Page 11: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Position vs. Time VERSUS Velocity vs. Time

Position vs. Time Graph

Velocity vs. Time Graph

X-axis

Y-axis

Slope

Steeper line means…

Horizontal line means…

Downward sloping line means…

Time (s) Time (s)

Position (m) Velocity (m/s)

Velocity (m/s) Acceleration (m/s2)Faster velocity Speeding up

No velocity = at rest

Constant velocity = no acceleration

Moving backwards/Negative velocity

Slowing down

Page 12: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Create the matching velocity vs. time graph:

Page 13: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Answer on next click

0 5 10 15 20 25 30

-1.5

-1

-0.5

0

0.5

1

1.5

2

velocity vs time (answer)

Time (s)

Velo

city

(m

/s)

Page 14: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Displacement from V vs T

To find the displacement, calculate the area under the curve of a velocity-time graph!

Page 15: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Example

Consider the position vs time graph on the back of your homework…

Page 16: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Example 1

1. What does the slope of the graph measure? (if anything)

2. What does the area of the graph measure? (if anything)

3. Describe the motion of the object 4. What is the position of the object at 2 seconds?5. What is the velocity of the object from 2 - 3

seconds?6. What is the acceleration between 2-3 seconds?

Page 17: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Example 1

1. What does the slope of the graph measure? (if anything) - Slope measures the velocity.2. What does the area of the graph measure? (if anything)- Area has no meaning.3. Describe the motion of the object - The object is moving at a constant positive velocity from 2m before stopping at 5 for a second. The object then returns with a negative velocity to its starting position and continues past the starting position to 1 m. What is the position of the object at 2 seconds?

Page 18: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Example 1

4. What is the position of the object at 2 seconds?- 4 m5. What is the velocity of the object from 2 - 3 seconds?- 1 m/s6. What is the acceleration between 2-3 seconds?- 0 m/s2 because the velocity is constant.

Page 19: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Example 2

1. What does the slope of the graph measure? (if anything)2. What does the area of the graph measure? (if anything)3. Describe the motion of the object4. What is the velocity of the object at 2 seconds?5. What is the acceleration of the object from 2-3 seconds?6. What is the change of position between 2 and 3

seconds?

Page 20: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Example 2

1. What does the slope of the graph measure? (if anything)- The acceleration2. What does the area of the graph measure? (if anything)- The position3. Describe the motion of the object- The object is accelerating away from its initial position in the positive direction before maintaining a constant velocity for 1 second. The object then continues moving in the positive direction as it decelerates to 1 m/s.

Page 21: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Example 2

4. What is the velocity of the object at 2 seconds?- 4 m/s5. What is the acceleration of the object from 2-3 seconds?1 m/s2

6. What is the change of position between 2 and 3 seconds?- 4.5 m (Area of a trapezoid with base 4 and base 5 and height 1)

Page 22: Warm Up. Constant Velocity  CONSTANT VELOCITY = NO CHANGE IN VELOCITY  Definition of acceleration = CHANGE IN VELOCITY over a period of time  CONSTANT.

Exit Question

Draw a velocity – time graph of someone walking away from a motion detector at 2 m/s, then standing still, then walking toward at 1 m/s.