Top Banner
Graphing Motion
20

Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Jan 02, 2016

Download

Documents

Lorena Newman
Welcome message from author
This document is posted to help you gain knowledge. Please leave a comment to let me know what you think about it! Share it to your friends and learn new things together.
Transcript
Page 1: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Graphing Motion

Page 2: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Graphs

Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Page 3: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Position-Time Graphs

Graphs often show how something changes with time.This graph shows how temperature changes with time in Santa Barbara, California.

Page 4: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Making a Position-Time Graph

This table shows how far a turtle has moved after an amount of time.

Page 5: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Making a Position-Time Graph (cont.)

Plotting the time on the x-axis and plotting the distance the turtle has moved on the y-axis creates the graph.You can draw a line through the points and use it to estimate the turtle’s position at a given time. (Estimate the position of the turtle at 90 seconds)

Page 6: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Units on Position-Time Graphs

Each number has units associated with it.Position has units of length like cm, m, or km.

Seconds, minutes, and days are units of time.

Page 7: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Slope of a Position-Time Graph

The steepness of a line on a graph is called the slope.The steeper the slope, the faster the object is traveling. (Which line represents a faster moving turtle?)

On a position-time graph, a steeper line means a greater average speed.

Page 8: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Calculating Slope from a Position-Time Graph

To find the slope of a line, the origin and another point are used to calculate the rise and the run.

Page 9: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Calculating Slope from a Position-Time Graph (cont.)

Rise is the change in vertical direction (up and down).

Run is the change in horizontal direction (left to

right). riserun

slope =

Page 10: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Slope and Average Speed

Average speed is the total distance divided by the total time taken to travel that distance.Rise is equal to the distance traveled.

Run is equal to the time taken to travel that distance.

Average speed is equal to the slope of the line on a position-time graph.

Page 11: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Position-Time Graphs for Changing Speed

Only objects with a constant speed will have position-time graphs with a straight line.

Page 12: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Position-Time Graphs for Changing Speed (cont.)

To find the average speed of the entire trip, use the starting and ending points.

Page 13: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Position-Time Graphs for Changing Speed (cont.)

Then calculate the slope of the line that would connect those points. (Calculate the slope using (0,0) and (10,10))

Page 14: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Speed-Time Graphs

Graphing instantaneous speed of an object shows how the speed of an object changes with time.Constant speed on a speed-time graph is a horizontal line because the speed does not change.

Page 15: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Speed-Time Graphs (cont.)

If an object speeds up, the plotted line slants up towards the right.

Page 16: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Speed-Time Graphs (cont.)

If an object slows down, the plotted line slants down towards the right.

Page 17: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Speed-Time Graphs (cont.)

Page 18: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Lesson 1-3: Review

The horizontal change on a graph is also called the ____.

A rise

B elevation

C run

D distance

Page 19: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Lesson 1-3: Review

The steepness of a line on a graph is called the ____.

A slope

B hill

C rise

D run

Page 20: Graphing Motion. Graphs Graphs can show how objects change position or speed. (How far away was the turtle after 60 seconds?)

Lesson 1-3: Review

If the rise is equal to 75 m and the run is equal to 2.5 m, then what is the slope?

A 187.5 m

B 12 m

C 30 m

D 0.03 cm