yes
okay they gain their momentum from the launch point take the hulk for example it gains a great amount of acceleration from the launch. and that momentum goes on through the ride. manta however gains its momentum through the pretzal loop.
a vel time graph passing through d origin.... at t=0.. vel=o.. bt acceleration not=0..
If an airplane passes through a mountain it will be tunnelling underground, probably as a result of having crashed. Anything passing through solid rock is going to be subject to an element of turbulence.
Every element emits a unique spectrum of colored lines when heated by passing an electric discharge through its gas or vapor. This is known as the element's atomic emission spectrum, and can be used to identify the element.
Any time you're going up a hill causing your speed to decrease, or goingdown a hill causing your speed to increase, or passing through the top ofa hill and starting back down, or passing through the bottom of a hill andstarting back up.So that's pretty much all the time, except maybe the chain-lift up the first hill.
Iodine is a nonmetal element that can sublime, meaning it can change directly from a solid to a gas without passing through a liquid phase.
Element iodine has the ability to undergo sublimation, which is the process of transitioning from a solid directly to a gas without passing through the liquid phase.
One example of an element that sublimes on heating is iodine. When solid iodine is heated, it directly changes into a gas without passing through a liquid phase.
If there's any point in the whole course where the cars don't all have exactly the same acceleration and speed, then they disconnect there, and the train comes apart.
The roller coaster in "Sharkboy and Lavagirl" is called the "Dream Rifter." It serves as a key element in the film, representing the imaginative and adventurous world created by the characters. The ride symbolizes the journey through dreams and the challenges faced by the protagonists.
The apparent change in weight that riders experience on a roller coaster is primarily due to the forces of acceleration and deceleration during the ride. As the coaster moves through loops, drops, and turns, it creates varying gravitational and inertial forces that can make riders feel heavier or lighter than their actual weight. For instance, at the top of a hill, riders may feel lighter due to reduced gravitational force, while at the bottom, they may feel heavier due to the increased force from acceleration. This sensation is a result of the dynamic interaction between the coaster's movements and the forces acting on the riders.
The train's acceleration cannot be determined from the information provided.