If one-third of the weight of the wood is above the water, then two-thirds of the weight is below the waterline. The weight of the water displaced by the wood is equal to the weight of the wood submerged in the water, according to Archimedes' principle. So the weight of the water displaced is two-thirds of the weight of the wood.
To calculate the weight of an object under water, you can use the equation: Weight (in water) = Weight (in air) - Buoyant force. The buoyant force is equal to the weight of the water displaced by the object. By subtracting the buoyant force from the weight in air, you can find the weight of the object in water.
The ISBN of The Weight of Water is 0316789976.
The Weight of Water was created in 1997.
The apparent weight of a body floating in water is equal to the weight of the water displaced by the body. This is known as Archimedes' principle. The apparent weight is less than the actual weight of the body due to the buoyant force acting on it.
The weight of 400 grams of water is 400 grams because the weight of water is equivalent to its mass.
Your weight is the same on land as on the water.
Technically, the object's weight is the same. The effective or measured weight, however, will be the original weight minus the weight of displaced water.
The weight of a pail of water will depend on the volume of water it can hold. On average, water weighs about 8.34 pounds per gallon, so you can calculate the weight of the water by measuring the volume of water in the pail and multiplying it by the weight per gallon.
It is the amount of your weight that is made of water. It means that 31.8 units of your total weight is made from water. If it was pounds, then you have 31.8 pounds of water in you.
The weight of a rock is less in water because water exerts an upward buoyant force on the rock, reducing its effective weight. This is due to the principle of buoyancy, where the weight of the water displaced by the rock counteracts the rock's weight.
The weight of water displaced in a massless balloon is equal to the weight of the water that the balloon displaces. This is determined by the volume of water displaced and its density, as weight is determined by the mass of the water and the acceleration due to gravity.