it affects it by if like say for instance it goes up a hill the speed would slow down or if u went down a hill then it would go faster.
by it being big
No, a roller coaster is not considered a wedge. A wedge is a simple machine that consists of a triangular shape and is used to separate objects or lift materials, like a knife or an axe. A roller coaster is a type of amusement ride designed for entertainment, involving tracks, cars, and gravitational forces rather than the mechanical function of a wedge.
Height of the tallest hill, I guess is the answer. There could be some other factors in the shape of the course like twists or spirals which would have some angular effect on the speed, as well.
The roller coaster as we know it today was significantly developed by LaMarcus Adna Thompson, who is often credited with inventing the first modern roller coaster in 1884. However, in 1898, Thompson introduced the "Scenic Railway," which featured a more refined design and was one of the first roller coasters to use a continuous track for the ride. This innovation helped shape the future of amusement park rides.
The kart or car that is used on a roller coaster is typically called a "train" or "roller coaster train." The train is made up of multiple cars or "coaches" that are connected together and are designed to safely carry passengers around the track. The cars in the train can vary in size and shape depending on the type of roller coaster and the design of the track. They are usually equipped with safety features such as lap bars or shoulder harnesses to keep riders securely in their seats during the ride.
Roller coasters have been around since the 17th century, with the first recorded instances appearing in Russia in the form of ice slides. However, the modern roller coaster as we know it began to take shape in the early 19th century, with the introduction of wooden coasters in the United States. The first true roller coaster, known as the "Switchback Railway," opened at Coney Island in 1884. Since then, roller coasters have evolved significantly in design and technology, becoming a staple of amusement parks worldwide.
The Camelback roller coaster is a type of amusement ride characterized by a series of hills that create a camel-like shape, featuring distinct peaks and valleys. Riders experience a combination of drops and airtime as the train navigates the hills, simulating a bouncing motion similar to riding a camel. This design often incorporates smooth transitions and can be found in various amusement parks, offering an exhilarating experience for thrill-seekers.
Increasing the velocity of the roller coaster can make it more thrilling by creating stronger g-forces and faster changes in direction, leading to greater sensation of speed and excitement for the riders. Additionally, varying the velocity throughout the course with sudden accelerations and decelerations can add unpredictability and intensity to the ride experience.
One example that illustrates the difference between potential and kinetic energy is a roller coaster. When the roller coaster is at the top of a hill, it has potential energy because of its height above the ground. As it goes down the hill, this potential energy is converted into kinetic energy, which is the energy of motion. Another example is a stretched rubber band - when it is stretched, it has potential energy, and when it is released, it converts this potential energy into kinetic energy as it snaps back into its original shape.
It totally depends on the pasta roller that you have. You can buy one with almost any shape you can imagine.
To make roller coaster track out of scrap materials, start by collecting strong, durable materials such as metal pipes, wood beams, or sturdy plastics. Cut and shape the pieces to form the necessary curves and straight sections of the track, ensuring they can support the weight and speed of a cart. Securely join the sections using welding, bolts, or screws, and ensure the entire structure is stable and safe. Finally, test the track with a small cart to check for smoothness and safety before any actual use.
the shape dose effect it.