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This is the link for the simulation. https://phet.colorado.edu/sims/html/projectile-motion/latest/projectile-motion_en.html To start the simulation, go to the link on top of this page. The design of our

This is the link for the simulation.

https://phet.colorado.edu/sims/html/projectile-motion/latest/projectile-motion_en.html

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To start the simulation, go to the link on top of this page. The design of our simulation today is to be able to determine how varying the height from which your projectile is launched (changing vertical displacement) affects its time of ight and range. For all your measurements, keep the following variables xed throughout the entire simulation: the type of projectile used, the air resistance (choose no air resistance), projection angle and initial velocity. Record your measurements in the following table: Initial Velocity = Type of projectile: Angle of projection = Vertical Theoretical time Experiment Theoretical Experimental Number displacement of flight (s) al time of range (m) range (m) Of flight (s) Adx = trials Ady = VicoseAt VisineAttaAt2 (solve for At) 2 4Answer the Testable Question. Write a statement that describes the relationship between vertical displacement and theoretical time of ight. Write a statement that describes the relationship between the vertical displacement and theoretical range. What were your Independent and dependant variables of this simulation? ' How can you manipulate other variables to study the projectile motion? Use MLA format for your lab report. Your report should include objective, data collected, theoretical analysis (equations used), observations and conclusions & discussion of results. When drawing the graphs, you can do them neatly by hand or use Excel or Desoms. Include all your theoretical calculations for the time of ight and range. Use the questions in your lab worksheet to guide you only. Don't use question and answer format in your lab report. 1) Go to the following website https://phet.colorado.edu/sims/html/projectile-motion/latest/projectile-motion_en.html Projectile Motion Vectors Drag Lab Intro 2) Choose the tab that says Lab Projectile Motion Intro Vectors Drag Lab3) Set your initial values Initial Values Height: 0 m Angle: 80' Speed: 18 m/s Choose type of Cannonball Mass projectile Diameter 0.18 m 0.1 Gravity 9.81 m/s' Air Resistance Altitude 0 m Rotate to choose Drag Coefficient 0.47 10 m -80% the angle 15.0 m Initial Speed 18 m/s Choose initial O Normal Slow velocity 4) Keep your initial values fixed all the time. 5) Start changing the height of the cannon by dragging it upwards 6) Press the red button in the bottom middle of the screen to shoot the projectile 7) Measure the range and the time of flight by dragging the measuring tool at the top right of the screen

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