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How does increasing the mass of an object affect the distance the object travels?

In zero gravity, the mass of an object does not effect the distance an object travels at all unless there is a constent force acting upon it. However, if it is in contact with another object, and gravity is what keeps the 2 or more objects touching each other, then mass will effect the distance it travels because of friction.


What describes the effect of distance on the intensity of light?

As light travels further from its source, its intensity decreases with the square of the distance traveled. This is known as the inverse square law, meaning the intensity of light diminishes drastically as distance increases. This is due to the spreading out of light over a larger area as it travels further.


How does light intensity vary with distance form the source?

Light intensity decreases as distance from the source increases. This is because light spreads out in all directions as it travels, causing the same amount of light to be distributed over a larger area the further it travels. This decrease in light intensity follows an inverse square law, meaning that the intensity decreases proportionally to the square of the distance from the source.


An object travels a given distance at a speed of 5 m s If the object travels the same distance at a higher speed how will the time it takes the object to travel the distance be affected?

If the object travels the same distance at a higher speed, the time it takes to travel the distance will decrease. This is because time is inversely proportional to speed when distance is constant. So, increasing the speed will result in less time taken to cover the same distance.


What happens when light travels far way from its source?

When light travels a far distance from its source, it becomes more dispersed and weaker due to absorption, scattering, and divergence. The intensity of the light decreases as it spreads out, leading to dimmer illumination and reduced visibility.

Related Questions

How does increasing the mass of an object affect the distance the object travels?

In zero gravity, the mass of an object does not effect the distance an object travels at all unless there is a constent force acting upon it. However, if it is in contact with another object, and gravity is what keeps the 2 or more objects touching each other, then mass will effect the distance it travels because of friction.


What describes the effect of distance on the intensity of light?

As light travels further from its source, its intensity decreases with the square of the distance traveled. This is known as the inverse square law, meaning the intensity of light diminishes drastically as distance increases. This is due to the spreading out of light over a larger area as it travels further.


How does light intensity vary with distance form the source?

Light intensity decreases as distance from the source increases. This is because light spreads out in all directions as it travels, causing the same amount of light to be distributed over a larger area the further it travels. This decrease in light intensity follows an inverse square law, meaning that the intensity decreases proportionally to the square of the distance from the source.


An object travels a given distance at a speed of 5 m s If the object travels the same distance at a higher speed how will the time it takes the object to travel the distance be affected?

If the object travels the same distance at a higher speed, the time it takes to travel the distance will decrease. This is because time is inversely proportional to speed when distance is constant. So, increasing the speed will result in less time taken to cover the same distance.


When light travels from air to glass its speed?

. . . decreases.


What happens when light travels far way from its source?

When light travels a far distance from its source, it becomes more dispersed and weaker due to absorption, scattering, and divergence. The intensity of the light decreases as it spreads out, leading to dimmer illumination and reduced visibility.


What happens when light travels farther from its source?

As light travels farther from its source, it spreads out and becomes less intense. This is known as the inverse square law, where the intensity of light decreases exponentially with distance. Additionally, factors such as absorption and scattering in the medium through which light travels can also affect its brightness and color.


What is the effect of distance on the power of laser?

The power of a laser decreases with distance due to beam divergence, where the laser beam spreads out as it travels farther. This results in a decrease in power density at the target area. Additionally, factors such as scattering and absorption by the medium through which the laser beam travels can further attenuate the power at greater distances.


How is the force needed to move a block related to the dis tance it travels?

The force needed to move a block is directly related to the distance it travels. As the distance the block travels increases, more force is required to overcome friction and other resistive forces acting against the motion. This relationship is commonly described by the work-energy principle.


How distance affects the loudness of a sound?

As distance increases, the intensity of sound decreases due to spreading out of the sound waves in all directions. This decrease in intensity leads to a reduction in loudness as the sound travels further from its source. At double the distance, the sound intensity will be one-fourth as strong.


Does the suns energy become stronger the farther it travels?

No, the sun's energy does not become stronger as it travels. Instead, the intensity of solar energy decreases with distance due to the inverse square law, which states that the intensity of light or radiation is inversely proportional to the square of the distance from the source. As the sunlight travels through space, it spreads out over a larger area, resulting in lower energy per unit area.


How does distance and time affect the speed at which something travels?

Because distance/time = the speed at which something travels.