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How and why was the roller coaster built?

They date back to ice sledding in the 1400s in Russia. It finally came over to America in the early 1800s with the Mauch Chunk Switchback Railway in Pennsylvania, although it was initially intended to haul coal up a mountain. By the early 20th century, there were 1500 wooden roller coasters around the country.



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Largely considered an American phenomenon, roller coasters actually have their roots in the ice slides that first appeared in the 17th century in Russia, near St. Petersburg. They were built out of lumber covered with a sheet of ice severaljjjlkkkkk inches thick, and featured drops of 50 to 80 feet.

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06 September 22 - 5 Interesting Facts About Roller Coasters
  • The First Roller Coaster was Built in 1817. ...
  • Britain's Oldest Surviving Roller Coaster was Built in 1920. ...
  • There are More Than 2,400 Roller Coasters in the World Today. ...
  • Roller Coaster are Among the Safest Rides. ...
  • Roller Coaster Loops are Never Perfectly Circular.


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Basic mathematical subjects such as calculus help determine the height needed to allow the car to get up the next hill, the maximum speed, and the angles of ascent and descent. These calculations also help make sure that the roller coaster is safe. No doubt about it--math keeps you on track.

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The roller coaster has its origins in St. Petersburg, Russia, as a simple slide that took thrillseekers down an icy ramp past a variety of colored lanterns. Catherine the Great gave this custom a boost when she fitted her imperial sleigh with wheels for summer use.

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Our fight or flight response is activated which signals the rush of adrenaline. Those who are in favor of roller coasters tend to experience joy, happiness, excitement and satisfaction as this is what they wanted to feel. Therefore the psychological effect is positive. The pleasure principle is quite content.

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Most roller coasters run by the Law of Inertia. Since an object at rest stays at rest, all roller coasters have to be pushed or pulled to get started.

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The coaster tracks serve to channel this force — they control the way the coaster cars fall. If the tracks slope down, gravity pulls the front of the car toward the ground, so it accelerates. If the tracks tilt up, gravity applies a downward force on the back of the coaster, so it decelerates.

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If the tracks tilt up, gravity applies a downward force on the back of the coaster, so it decelerates. Since an object in motion tends to stay in motion (Newton's first law of motion), the coaster car will maintain a forward velocity even when it is moving up the track, opposite the force of gravity.

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According to Kevin Hickerson, a physicist at the California Institute of Technology, “All the energy a roller coaster gets comes from the initial point it's cranked up to, and from there it just gains more and more kinetic energy.” The height of this first drop also determines the speed of the coaster cars.

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