Introduction:
When one walks into a theme park, they enter an whole world powered by physics. Most people that go on a theme park ride put on’t realise that it is the result of physics that is allowing them to freefall a vitamin C metres downwards or accelerate over a cytosine kilometres an hour in under five seconds. Rides such as bury towers, roller coasters, pendulums and spinning rides are all make on physics laws and equations. The concepts and principles involved in these types of rides include: nitrogen’s Laws, gravity, acceleration, freefall, centripetal acceleration, circular motion, kinetic and potential energy, lowest velocity and conservation of energy.
The giant drop is the tallest, free-falling ride in the world. The ride stands 120 metres high and reaches speeds of up to 135km/h. The main physics laws employed in this ride are: freefall, acceleration, gravity and store velocity.
Method:
The data collected in order to canvass these laws was done by taking triangulation measurements in a received spot a specific distance away from the ride.
& counterfeit;The duration of freefall was timed using a stopwatch.
& turd;The tip to motorcar at the drop point; top of the braking regularize and dawn of the braking zone were measured using a clinometer.
& damn;The height at drop point and top and bottom of the braking zone were calculated by using the trigonometry ratios.
•The distance over which the gondola decelerated to rest was calculated.
• while of braking was timed using a stopwatch.
•The velocity during freefall and lag were calculated.
•The accelerometer was strapped on; acceleration and deceleration were measured.
Results:
Discussion:
Freefall, acceleration, gravity, velocity and terminal velocity all make the giant drop an exciting, exhilarating ride to go on. This type of ride consists of ternary parts: the ride to the top, the momentary suspension and the plunge downwards. The gondola is...If you want to get a full essay, order it on our website: Ordercustompaper.com
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