Table of Contents
- 1 How does ramp height affect the speed of the marble?
- 2 How does a ramp affect a rolling marble?
- 3 How does marble size and ramp height affect roll time?
- 4 What affects the motion of the marble?
- 5 How does the angle of inclination affect the velocity of the marble?
- 6 How does the height of a ramp affect the distance traveled?
- 7 How does the angle of a ramp affect speed?
- 8 How is the speed of a marble measured?
How does ramp height affect the speed of the marble?
As the height of the runway increases, the average speed of the marble will also increase. As the height of the runway increases the gravitational potential energy of the marble will also increase. As the marble moves down the runway, its gravitational potential energy is converted to kinetic energy.
How does a ramp affect a rolling marble?
The height of the ramp will change the speed and distance the ball rolls because when the ramp is higher, the ball will be higher. The weight of the Marble will affect the distance it roll and also the speed at which it rolls at.
Does shape of ramp affect speed?
The effect of incline shape on incline speed is remarkably simple. At any point along an incline, an object’s speed depends on the net vertical drop at that point, regardless of the ramp shape prior to that point. Therefore, for a given object on the surface of the earth, incline speed varies with vertical drop.
How does marble size and ramp height affect roll time?
(The faster the marble is going when it comes off the ramp, the farther it’s going to roll along the floor. Of course, if it meets lots of friction on the floor surface, like a carpet instead of linoleum, it may slow down quickly.)
What affects the motion of the marble?
-Objects move when pushed or pulled. -Objects will change speed and direction when in contact with another object. -Force (how hard the marble is pushed) will affect how fast the marble moves (speed).
Which ramp is the fastest?
dip ramp
The dip ramp is the quicker ramp, because the net vertical drop is greater along the dip than along the hill. …
How does the angle of inclination affect the velocity of the marble?
The acceleration increased as the angle of inclination increased, and the velocity of the marble was found to be constantly increasing as it traveled down the ramp. It was determined after analysis and comparison that the sine of the angle directly related to the acceleration of the marble.
How does the height of a ramp affect the distance traveled?
Answer: The marble will travel faster when the height of the inclined plane was raised. Explanation: Therefore, raising the inclined plane increases the speed of the marble rolling down the inclined plane, and the greater distance it will travel.
What’s the acceleration of marble falling down a ramp?
The force due to gravity on objects moving down a ramp with a slope between horizontal and vertical will have an acceleration between zero and 9.8m/s2. Students working in groups, will discover how the height of the coaster track affects the velocity of the marble falling down the track.
How does the angle of a ramp affect speed?
How does the angle of a ramp affect velocity? According to Education.com, the pull of gravity acts more on an object rolling down a ramp inclined at a steeper angle, hence causing it to accelerate and move faster. An object on it naturally rolls downward, with its speed being affected by the degree of tilt. …
How is the speed of a marble measured?
The faster the marble moves down the track the faster is its velocity. A timer can be used to measure the time of the marble’s movement on each ramp or students can determine by observation which height caused the marble to move faster. 1. Ask each group to collect data for specific heights.
What was the effect of the height of the ramp?
What effect does the height of the ramp have on the final velocity of the marble if the slope of the ramp is constant? Galileo’s hypothesis was that as long as the height of ramps were equal, the final velocity of the ball rolling down the ramps would be equal.