Ice floats in water, but sinks in alcohol because ice is lighter than water and heavier than alcohol. This buoyancy phenomenon occurs due to differences in density. Ice has a lower density than water but a higher density than alcohol.
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The historical tower of Pisa does not fall even though it is tilted because the vertical line passing through its center of gravity passes through the base. This alignment helps stabilize the tower and prevent it from collapsing despite its ...
A person climbing a hill leans forward to increase stability. Leaning forward shifts the center of mass towards the hillside, improving balance and reducing the risk of falling backward. This position also allows for better utilization of leg muscles and ...
If a person pushes a wall but fails to displace it, then he does no work. Work is defined as the product of force and displacement in the direction of the force. Since there is no displacement, no work is ...
The work done to hold a weight of 20 kg at a height of 1 m above the ground is zero Joules. When an object is held stationary, there is no displacement, so no work is done against gravity.
An astronaut can jump higher on the lunar surface than on the Earth’s surface because the force of gravity on the lunar surface is very less as compared to the Earth’s surface. This weaker gravity allows the astronaut to exert ...
Body weight varies with location on Earth’s surface due to differences in gravitational acceleration. It is maximum at the poles due to being closer to the Earth’s center, and minimum at the equator due to the centrifugal force caused by ...
As we move from the equator towards the poles, the value of g decreases. This is because the centrifugal force due to Earth’s rotation is greatest at the equator, causing a slight outward push that counteracts some of the gravitational ...
When a person lands on the Moon, there is a change in weight. Weight is the force exerted on an object due to gravity, and since the Moon has less gravity than Earth, the person’s weight decreases. However, their mass ...
Force is the product of mass and acceleration. It is described by Newton’s second law, F = ma, where F represents force, m is mass, and a is acceleration. This relationship states that the force acting on an object is ...