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Here is my roller coaster information: Cart weight is 500g, initial height is 75 meters, Peak 1 is 60 meters, Peak 2 is 45 meters,
Here is my roller coaster information: Cart weight is 500g, initial height is 75 meters, Peak 1 is 60 meters, Peak 2 is 45 meters, Valley 1 is 10 meters, and Valley 2 is 25 meters.
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You have been asked by your supervisors at A&L Engineering to design a roller coaster for a new theme park. Because this design is in the initial stages, you have been asked to create a track for the ride. Your coaster should have at least two peaks and two valleys. and launch from an initial height of 75 meters. Each peak and valley should represent a vertical change of at least 20 meters. In your design,you should plan for a mass between 400 and 600 kilograms. Once you have designed the track, you have been asked to calculate the kinetic energy, potential energy, momentum, and work done bythe cart at various points throughout the track. Unless otherwise stated,you can ignore the effects of friction. Following your calculations, you have been asked to describe the energy transfers detailed by these equations. Directions To complete this roller coaster design report. complete the following: 1. Create a diagram of a roller coaster track containing at least two peaks and two valleys. As you complete your report, you may wish to design a more complicated coaster. However, it should still have two peaks and two valleys that meet the requirements below and that you are comfortable using in calculations and descriptions of energy and momentum. Your diagram should include the following information: a An initial height of 75 meters 0 At least two peaks and two valleys representing drops of over 20 meters 0 Aset mass for your roller coaster cart between 400 and 600 kilograms 2. Calculate the kinetic energy, potential energy, and momentum ofthe cart at the initial drop for both peaks, and for both val leys. If your coaster has more than two peaks and two valleys, select which peaks and valleys you wish to use in your calculations and clearly mark them on your diagram. In your calculations, be sure to explicitly state the equations you use and what values you will be substituting to calculate the nalvalue. 3. Describe the energy transfers that occur as the cart moves along the track. This should be a narrative description of the energy transfers that occur at the initial launching point, peaks, and valleys. In your descriptions, address the following: a At each of the identied points, how was kinetic energy transferred to potential energy, and vice versa? 0 What happens to the total energy ofthe cart as it moves along the track? Why? a How is the principle of conservation of energy applied in this situation? In addition to your description of the motion ofthe cart on the track, you have been asked to model the motion of the cart as it comes to a stop at the end of the coaster. For these calculations, assume that the cart will inelastically collide with a cart of equal mass at rest on a at surface. 4. Calculate the momentum and kinetic energy of the cart before and after an inelastic collision. In your calculations, be sure to explicitly state the equations you use and what values you will be substituting to calculate the nal value. 5. Describe the energy transfers that occur as a cart inelastically collides with an object of equal mass at rest. This should be a narrative description of the energytransfers that occur as the cart inelastically collides with a cart of equal mass. In your descriptions, address the following: a What was the kinetic energy of each cart before and afterthe collision? a What happens to the total energy ofthe system, now including both carts, as a result of the inelastic collision? 5. Describe the energy transfers that occur as a cart inelastically collides with an object of equal mass at rest. This should be a narrative description of the energy transfers that occur as the cart inelastically collides with a cart of equal mass. In your descriptions, address the following: o What was the kinetic energy of each cart before and after the collision? o What happens to the total energy of the system. now including both carts. as a result ofthe inelastic collision? 0 Describe how the principle of conservation of energy is applied in this situation. Following the inelastic collision ofthe carts. the two carts fuse into an object with double the mass ofthe original cart.There is then a frictional section of the track to slowthe cart to a stop over 20 meters. Describe the amount of work due to friction and frictional force exerted to stop both carts over 20 meters. 11) Listen 6. Calculate the work due to friction and frictional force. In your calcula El Dictic'lal'tr to explicitly state the equations you use and what values you will be substitutingto calculate thenal value. [BUD Translate 7. Describe the energy transfers that occur as the cart is brought to a stop. This should be a narrative description of the energy transfers written to describe these concepts to a nontechnical audiencethat occur as the cart is brought to a stop. In your descriptions, address the following: o What is the kinetic energy of the cart system before and after it has been brought to a stop? 0 What happens to the total energy of the system as a result of this change in motion? 0 Describe how the principle of conservation of energy is applied in this situation. What to Submit To complete this project.you must submit the following: Roller Coaster Design Report Submit the completed Roller Coaster Design Report Template. Your design report should include a diagram describing the peaks and valleys in your roller coaster design. Your report should also include calculations and qualitative descriptions of the motions of the cart and of the energy transfers that occur as the cart moves. Sources should be cited according to APA style. Supporting Materials The following resource may help support your work on the project: Reading Equation Editor Tutorial This tutorial shows you how to usethe Microsoft Ofce Equation Editor. a builtin tool that helps display mathematical equations inside Microsoft products such as Word. A 75 m P 2 60 m V 2 25 m 45 m 10 m V1 10 mStep by Step Solution
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