The heavier the boat is loaded, the deeper in the water the boat will float.
A boat floating on water experiences a buoyant force that pushes it upwards, opposing the force of gravity. This force is generated by the water displaced by the boat, with the magnitude of the buoyant force equal to the weight of the water displaced.
A boat floats because of buoyant force, which is the upward force exerted by a fluid (water) on an object immersed in it. This force is equal to the weight of the fluid displaced by the object, providing an upward force that counteracts the weight of the boat. As long as the buoyant force is greater than or equal to the weight of the boat, it will float.
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An aluminum boat floats due to its hull displacing water, creating buoyant force greater than its weight. By adding pennies, the weight increases, but as long as the buoyant force generated by displacing water is greater than the total weight (boat + pennies), the boat will continue to float.
A boat can float because the mass of the water it displaces is greater than the mass of the boat itself, creating an upward buoyant force. A rock, on the other hand, is denser than water and therefore displaces less water than its own mass, resulting in a downward force greater than the buoyant force, causing it to sink.
A boat floating on water experiences a buoyant force that pushes it upwards, opposing the force of gravity. This force is generated by the water displaced by the boat, with the magnitude of the buoyant force equal to the weight of the water displaced.
A boat floats because of buoyant force, which is the upward force exerted by a fluid (water) on an object immersed in it. This force is equal to the weight of the fluid displaced by the object, providing an upward force that counteracts the weight of the boat. As long as the buoyant force is greater than or equal to the weight of the boat, it will float.
We know that the force of buogant = Density volume . Accerlation of buoyant geqvity given Mass= 600kg. Therefore, force of buogant = mass.
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An aluminum boat floats due to its hull displacing water, creating buoyant force greater than its weight. By adding pennies, the weight increases, but as long as the buoyant force generated by displacing water is greater than the total weight (boat + pennies), the boat will continue to float.
A boat can float because the mass of the water it displaces is greater than the mass of the boat itself, creating an upward buoyant force. A rock, on the other hand, is denser than water and therefore displaces less water than its own mass, resulting in a downward force greater than the buoyant force, causing it to sink.
-- soap floating in the bathtub -- ice floating in your drink -- cruise ship floating in the Caribbean -- your 9-yr-old son picking you up when you're both up to your necks in the pool -- a hot-air balloon drifting over you at 1,500 ft
The shape of a boat with a hull that displaces water creates buoyancy. When the boat sits in water, the displaced water exerts an equal and opposite force on the boat, pushing it upwards. This buoyant force allows the boat to float on the water's surface.
A beach ball is buoyant because it floats on water due to its low density and ability to displace water, creating an upward force known as buoyancy.
The buoyant force acting on the boat is equal to the weight of the water displaced, which is equal to the weight of the boat. Therefore, a 10N boat would displace 10N of water.
It sinks because the water it is displacing is going and the buoyant force is no longer greater so it sijnks
Boats float due to the principle of buoyancy, which is the upward force exerted by water that opposes the weight of the boat. The shape and design of the boat help displace enough water to create buoyant force, allowing it to float.