Link https://phet.colorado.edu/sims/html/forces-and-motion-basics/latest/forces-and-motion-basics_en.html In this lab you will determine the relationship between acceleration and mass. Choose an Applied Force at the beginning, and keep it constant for this entire experiment. Set the friction to zero. This will make your Applied Force equal to the net force. Record data for five different values of Mass. Graph Acceleration vs. Mass. Graph this in Google sheets(you want a line graph - it should only have one line). Make sure that Mass information is used as the x value Make sure that Acceleration information is used as the y value Add a trendline – see what fits best – linear, exponential, polynomial, etc … Add a copy of you graph below the table Applied Force (N) Mass (kg) Acceleration (m/s²)

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter1: Introduction To Statics
Section: Chapter Questions
Problem 1.19P: Plot the earths gravitational acceleration g(m/s2) against the height h (km) above the surface of...
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Experiment #2: Acceleration vs. Mass

Link https://phet.colorado.edu/sims/html/forces-and-motion-basics/latest/forces-and-motion-basics_en.html

In this lab you will determine the relationship between acceleration and mass.

  • Choose an Applied Force at the beginning, and keep it constant for this entire experiment.
  • Set the friction to zero. This will make your Applied Force equal to the net force.
  • Record data for five different values of Mass.
  • Graph Acceleration vs. Mass.
    • Graph this in Google sheets(you want a line graph - it should only have one line).
    • Make sure that Mass information is used as the x value
    • Make sure that Acceleration information is used as the y value
    • Add a trendline – see what fits best – linear, exponential, polynomial, etc …
    • Add a copy of you graph below the table



Applied Force (N)

Mass (kg)

Acceleration (m/s²)

     
     
     
     
     








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