Monday, December 30, 2019

Maximum Safe Velocity On The Car - 1139 Words

Maximum Safe Velocity Scenario 1 The two forces acting on the car when it turns a circular path are centripetal force, FCP , and friction, Ff . As mentioned in Relevant Physics Topics, the direction of friction opposes the direction of motion, which, in this scenario, is centripetal force, and because centripetal force directs towards the center of the circle, friction directs outside of the circle (Madden et al., 2001). To calculate the safe cornering speed on a level road, centripetal force has to equal friction so that the vehicle isn’t sliding in or out of the road. The formula was developed in Calculation 4 from the Appendix. The derived formula was v=√(ÃŽ ¼s*r*g) By substituting the numerical values in the equation, the maximum safe cornering speeds were calculated in following table: *Note: ÃŽ ¼s=0.9 is dry condition, ÃŽ ¼s=0.7 is wet condition Scenario 2 In this scenario, a vehicle is turning right downwards an incline. In this case, the x component, of the normal force is greater than centripetal force and the vehicle is wanting to slide down the incline, towards the center of the curve. However, friction opposes the motion and pull the car up the incline to keep the car from sliding (Stanbrough, 2006). This is shown in Diagram 3. Before calculating the maximum speed of safe cornering, the angle ÃŽ ¸ needs to be found. This was done in Calculation 2 from the Appendix. Using ÃŽ ¸, x and y components were found and substituted to solve v in Calculation 5. Scenario 3 In scenarioShow MoreRelatedPhysics : Physics Of Physics2074 Words   |  9 Pagesand see what can be done better. One of the systems that relates to engineering design simulations was a roller coaster. 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