kinetic energy
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The distance a toy car can travel on a ramp depends on factors like the incline of the ramp, the initial velocity of the car, and any friction present. In general, a toy car on a ramp can roll for a distance equivalent to the length of the ramp if there is no significant friction or obstacles in its path.
Yes, the roughness of a ramp can slow down a toy car because friction between the rough surface of the ramp and the wheels of the toy car will create resistance, causing the car to lose some of its kinetic energy as heat. This will result in the car moving more slowly compared to a ramp with a smoother surface.
One factor is the height of the ramp. The higher the height of the ramp the further the car travels. Another factor is the surface of the ramp. With a rough surface on the ramp e.g sand paper the car travels a short distance. With a lubricated surface on the ramp e.g Vaseline the car will travel a very long distance.
The height of the ramp is an independent variable, as it is manipulated by the researcher. The mass of the toy car is a dependent variable, as it is measured based on the height of the ramp.
A toy car goes down a ramp due to the force of gravity pulling it downward. As the car gains speed, its kinetic energy increases, causing it to move faster down the slope. Friction between the wheels and the ramp surface also plays a role in helping the car move forward.
at the top of the ramp the toy has a certain amount of potential energy. The amount of this energy depends on the height of the ramp and the weight of the toy. (The toy's weight is dependent on its mass and the force of gravity.) As the toy rolls down the ramp this potential energy is converted to two other types of energy: Kinetic energy and heat energy. The amount of heat energy depends on friction and air resistance. The lower the total resistance the more kinetic energy, and the more speed, the toy has at the bottom of the ramp.
Yes, the toy car will likely go faster if the height of the ramp is raised from 20 cm to 50 cm. This is because the higher the ramp, the more potential energy the car will have at the top of the ramp, which will be converted into kinetic energy as it rolls down. The increase in height will result in a greater velocity for the toy car due to the increased gravitational potential energy.
The distance a toy car can travel on a ramp depends on factors like the incline of the ramp, the initial velocity of the car, and any friction present. In general, a toy car on a ramp can roll for a distance equivalent to the length of the ramp if there is no significant friction or obstacles in its path.
it all depends on the height of either the ramp or how far up the ramp the toy car rolls from
A plastic toy car
Yes, the roughness of a ramp can slow down a toy car because friction between the rough surface of the ramp and the wheels of the toy car will create resistance, causing the car to lose some of its kinetic energy as heat. This will result in the car moving more slowly compared to a ramp with a smoother surface.
One factor is the height of the ramp. The higher the height of the ramp the further the car travels. Another factor is the surface of the ramp. With a rough surface on the ramp e.g sand paper the car travels a short distance. With a lubricated surface on the ramp e.g Vaseline the car will travel a very long distance.
The height of the ramp is an independent variable, as it is manipulated by the researcher. The mass of the toy car is a dependent variable, as it is measured based on the height of the ramp.
If the toy car's ramp is on 45 degrees and if the toy car is put on some weight, the toy car will go faster because it goes faster, which makes the car go further.
That depends on the toy car's weight, size, and the length and height of the ramp. Use science and math to figure this out.
A toy car goes down a ramp due to the force of gravity pulling it downward. As the car gains speed, its kinetic energy increases, causing it to move faster down the slope. Friction between the wheels and the ramp surface also plays a role in helping the car move forward.
Yes, because if the average velocity for a car on a ramp at 17 degrees is 1.727(m/s), and if you change the degrees of the ramp, you change all the data points that were gathered to get 1.727. If that was to hard then Yes It will change the V.