Question: Open the simulation link https:/www.physicsclassroom.com/Physics-Interactives/Momentum-and-Collisions/Collision-Car ts/Collision-Carts-Interactive Observations/Task [3 marks for just doing the simulation] Using the simulation link above, set up the following scenario for

 Open the simulation link https:/www.physicsclassroom.com/Physics-Interactives/Momentum-and-Collisions/Collision-Car ts/Collision-Carts-Interactive Observations/Task [3 marks for just

Open the simulation link https:/www.physicsclassroom.com/Physics-Interactives/Momentum-and-Collisions/Collision-Car ts/Collision-Carts-Interactive Observations/Task [3 marks for just doing the simulation] Using the simulation link above, set up the following scenario for an inelastic collision (select button at bottom of simulation). A) Set up the red car v1 with an initial velocity of +3m/s and mass of 3 kg. B) Set up the blue car v2 with an initial velocity of -4 m/s and mass of 1 kg. C) Run the simulation and record final velocity and direction of both cars after the collision. D) Now decrease the blue cars velocity to -3m/s, -2 m/s, -1m/s, and 0 m/s and record the results. Table [2 marks] Create an appropriate table (use lab guidelines, no estimate for error needed in these values) that includes initial and final velocities for both masses, momentum, and kinetic energy. Include sample calculations for calculated quantities. Derivation [2 marks] Derive the the theoretical relationship expected for v12' as a function of the blue car's initial velocity v2. Full annotated solution with labelled diagram of before and after the collision. Graph [3 marks] Plot a graph with v12 on the y axis and blue cars v2 on the x axes. Include the line or curve of best fit. Include description

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