Question: Hello could you help me with this, as I do not not have the materials required. Thank you ___ Analysis: For all three trials calculate

Hello could you help me with this, as I do not not have the materials required. Thank you

Hello could you help me with this, as I do not nothave the materials required. Thank you ___ Analysis: For all three trialscalculate the acceleration of the car moving down the slope (use x

___ Analysis: For all three trials calculate the acceleration of the car moving down the slope (use x = xu + spat + 1/2 at2]. Remember that when you first let go of the car its initial velocity is 0 before the acceleration causes it to increase. Then calculate the nal velocity using v = W + at. Show your work in the space provided. Don't forget units and signicant figures. Full credit will not be given without work being shown. Trial 1: Trial 2: Trial 3: Hot Wheels Lab Purpose: To apply the equations for objects moving with a constant acceleration to a LeaLlite situation. Equipment: . 1 small toy car - your Equation Card . a stopwatch - a piece of straight. flat wood at .- a measuring tag least 1.5 meters long . a calculator] Procedure: 1. Design a ramp using your wood. You can honestly use any material sturdy enough to make a straight, even surface for your car. Prop the end up at least 6 inches so that your car will roll down the ramp without any push from you. 2. Draw a starting line at the top of your ramp (or make one with masking tape). 3. Place your car at the starting line. 4. Let go of your car {without pushing it} and time how long it takes the car to travel the length of the ramp. Record this time in the table below. 5. Measure the distance your car traveled {from the starting line to the bottom of the ramp]. Record this in the table. It does not matter what units you measure this in, just make sure to convert to meters before recording the data in your table. 6. Repeat Steps 3-5 two more times. Data: Final Displacement {m} Conclusions: 1. What is the average final velocity of your car when it reaches the bottom of the ramp? (average your three trials) 2. What is the average acceleration of your car during its travel? 3. Do you think using a different car (with a different mass) would change the final velocity or the acceleration? Why or why not

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