To find the time it takes to move the object, you can use the formula: time = work/power. First, calculate the work done by multiplying the force (mass*gravity) by distance (11kg * 9.81m/s^2 * 6m). This gives you the work done in joules. Then divide this work by the power (42W) to find the time in seconds.
A football field is approximately 300 feet long, which is equivalent to 3,600 inches. So, an object that is 1000 inches long would be about one-fourth the length of a football field.
Doubling the mass of an object would double its potential energy as long as the height or position of the object remains constant. Potential energy is directly proportional to mass when height is a constant factor.
A long gradual incline would make pushing a heavy object easier compared to a steep incline. This is because the gradual incline allows for a more controlled and sustainable application of force over a longer distance, reducing the impact of the object's weight.
It would take approximately 50 seconds for an object to fall 60,000 feet in a vacuum without air resistance. However, in reality, factors like air resistance would affect the actual time it takes for the object to fall.
There can be forces acting on an object while it is at rest, as long as the forces cancel each out. For example: a block laying on a table feels the force of gravity pulling it down, but the table pushes up with the same force. Therefore, the forces cancel and the object remains at rest.
[object Object]
A football field is approximately 300 feet long, which is equivalent to 3,600 inches. So, an object that is 1000 inches long would be about one-fourth the length of a football field.
Doubling the mass of an object would double its potential energy as long as the height or position of the object remains constant. Potential energy is directly proportional to mass when height is a constant factor.
any transition within a sub,context will be effective in the placement of an object, so long as that object is indicative of its own transition
A long gradual incline would make pushing a heavy object easier compared to a steep incline. This is because the gradual incline allows for a more controlled and sustainable application of force over a longer distance, reducing the impact of the object's weight.
You can use a ruler to determine how long a object is
The same object that is 11.5 cm long
The length of the shadow depends not only on the height of the object, but also on how high the Sun is in the sky.
Not enough information. The length of the shadow depends on the height of the object AND on the how high the Sun is in the sky.
2.38 seconds.
As long as you do not warship them. Treat them the same as you would any decorative object.
A 304800 meter object is 1000000 feet long!