Distance vs. Time Graphs

Slides:



Advertisements
Similar presentations
Motion and Force A. Motion 1. Motion is a change in position
Advertisements

Distance Time Graphs Time is always plotted on x axis
MOTION. Chapter Four: Motion  4.1 Position, Speed and Velocity  4.2 Graphs of Motion  4.3 Acceleration.
Interpreting Motion Graphs {Forces and Motion. Distance vs Time Graphs The motion of an object is defined by its change of position over a period of time.
Diagrams and Motion Graphs.  The slope is equal to the acceleration.  Because we only consider constant acceleration, v/t graphs will always be straight.
Graphing Motion, Speed and Velocity. Graphs of Motion A Distance vs. time graph that is a straight line always means the object moves the same.
Mrs. Wharton’s Science Class.  Is the rate at which velocity changes  Acceleration involves a change in either speed or direction  In science acceleration.
VELOCITY TIME GRAPHS. The Velocity vs. Time Graph Velocity (m/s) Time (s) ∆v ∆t Velocity vs. time.
3.2 Notes - Acceleration Part A. Objectives  Describe how acceleration, time and velocity are related.  Explain how positive and negative acceleration.
Motion Quiz. 1. The slope of a position (distance) vs time graph equals what quantity of the motion?
Motion graphs pg.11. Create and interpret graphs of position versus time. Calculate velocity from the slope of the position vs. time graph. Create and.
MOTION GRAPHS.
 “Acceleration”.  Key Questions How do you calculate acceleration? What kind of motion does acceleration refer to? What graphs can be used to analyze.
Motion Graphs Learning Target: Be able to relate position, velocity, and acceleration quantitatively and qualitatively.
Introducing: Motion and Forces
Velocity and Speed Graphically
Motion Graphs Position-Time (also called Distance-Time or Displacement-Time) d t At rest.
Analysis of a Distance vs. Time Graph
Graphical Analysis Of Motion
Motion Graphs.
Motion Graph Shapes.
MOTION.
Accelerated Motion Chapter 3.
Describing Motion.
Exploring Motion.
Chapter 2 Objectives Describe motion in terms of changing velocity.
Graphing Velocity and Distance vs. Time graphs
Motion Graphing Acceleration vs. Time Graphs
(D-T Graphs, sometimes called P-T or Position-Time Graphs)
9.2 Calculating Acceleration
Consider a car moving with a constant, rightward (+) velocity - say of +10 m/s. If the position-time data for such a car were.
Chapter 2 Objectives Describe motion in terms of changing velocity.
Motion and Force A. Motion 1. Motion is a change in position
Graphing Motion Walk Around
Ch. 5 Sec. 1 Graphing Acceleration Velocity-Time Graphs
Motion Map Practice Name: ____________________________
GRAPHING ACCELERATION
Acceleration—Changes in Velocity (cont.)
Speed, Velocity, and Acceleration
1. Distance vs. time graphs
Pictures worth even MORE words now!
Motion Graphs.
Exploring motion Graphing.
Graphing Velocity and Distance vs. Time graphs
9.2 Calculating Acceleration
Understanding Motion Graphs
Unit One The Newtonian Revolution
Describing Motion: Acceleration
Speed-Time Graphs Speed Time.
Section 3 – pg 350 Acceleration
Unit 1: Learning Target 1.5 Create & Interpret Motion Graphs:
The integral represents the area between the curve and the x-axis.
Motion Part 2: Distance-Time Graphs.
Physical Science: Chapter 11
Wednesday, 9/30 We are taking notes today…take out your notebook/paper and something to write with. In your notes respond to the following (3 minutes):
The resulting position-time graph would look like this.
Chapter 4, Section 3 Acceleration.
Motion.
Interpreting position vs time graphs
Distance-Time graph.
Velocity-Time Graphs for Acceleration
Velocity vs Time Graphs – Notebooks
Position vs Time Graphs
Velocity vs Time Graphs
Physical Science: Chapter 11 Section 2
Create graphs to match these prompts
Motion in One Dimension (Position vs. Time) Chapter 5.1
Exploring motion Graphing.
The resulting position-time graph would look like this.
Kinematics II Acceleration.
Presentation transcript:

Distance vs. Time Graphs Describe the type of motion each graph represents. Distance on the Y and time on the X-axis. Note: The slope of these graphs gives you the velocity. Constant speed negative direction.

Distance vs. Time Graphs Describe the type of motion each graph represents. Distance on the Y and time on the X-axis. Note: The slope of these graphs gives you the velocity. Constant speed negative direction. Standing Still

Distance vs. Time Graphs Describe the type of motion each graph represents. Distance on the Y and time on the X-axis. Note: The slope of these graphs gives you the velocity. Constant speed negative direction. Standing Still Decreasing velocity -a

Distance vs. Time Graphs Describe the type of motion each graph represents. Distance on the Y and time on the X-axis. Note: The slope of these graphs gives you the velocity. Constant speed negative direction. Standing Still Decreasing velocity -a

Distance vs. Time Graphs Describe the type of motion each graph represents. Distance on the Y and time on the X-axis. Note: The slope of these graphs gives you the velocity. Constant speed negative direction. Standing Still Decreasing velocity -a Increasing Velocity +a

Velocity vs. Time Graphs Describe the type of motion each graph represents. Velocity on the Y-axis and Time on the X-axis. Constant “+” acceleration Acceleration = speeding up

Velocity vs. Time Graphs Describe the type of motion each graph represents. Velocity on the Y-axis and Time on the X-axis Constant “+” acceleration No Acceleration (Speed is not Increasing or decreasing)

Velocity vs. Time Graphs Describe the type of motion each graph represents. Velocity on the Y-axis and Time on the X-axis. Constant “+” acceleration No Acceleration Constant “-” acceleration (decreasing constantly)

Story Time? Tell me a story for the following graphs. Distance vs. Time and then Velocity vs. Time.

Graph Overlays? Take the previous Distance vs. Time and draw a Velocity vs. Time graph which would show the same movements. d t

Graph Overlays? Take the previous Distance vs. Time a draw a Velocity vs. Time graph which would show the same movements. d t v t