liquid density
The pressure is greatest at the bottom of the bottle, as it is supporting the weight of the water above it. The pressure is least at the top of the bottle, where there is less water above exerting force.
The pressure is greatest at the bottom of the bottle, where the weight of the water above creates the most force. The pressure is least at the top of the bottle, where there is less water above applying force.
The pressure at any point at the bottom of the tank is determined by the height of the water column above that point. The pressure is given by the formula P = ρgh, where ρ is the density of water (around 1000 kg/m^3), g is the acceleration due to gravity (around 9.81 m/s^2), and h is the height of the water column (3.5 meters in this case). Plugging in these values will give you the pressure at the bottom of the tank.
Pressure is given by the formula P = h * d * g Here h is the depth or height of surface right from bottom. Given as 3.5 m d = density of water i.e. 1000 kg/m^3 g = 9.8 m/s^2 You could plug and get the value of P at bottom in pascal
It will weigh more because the total weight would be the sum of the person's weight and the weight of the water in the barrel.
10.85 psi.
the barrel is at the farthest corner on the ground in china
The pressure is greatest at the bottom of the bottle, as it is supporting the weight of the water above it. The pressure is least at the top of the bottle, where there is less water above exerting force.
The time it takes for a marble to hit the bottom of a glass cylinder filled with oil will depend on various factors such as the size and weight of the marble, the viscosity of the oil, and the height of the cylinder. Generally, it should take a few seconds to a minute for a marble to reach the bottom.
The pressure is greatest at the bottom of the bottle, where the weight of the water above creates the most force. The pressure is least at the top of the bottle, where there is less water above applying force.
The hole closest to the bottom of the bottle will spurt water the furthest. This is because pressure increases with depth in a liquid, so the water at the bottom of the bottle has the highest pressure and will spurt out with greater force.
15
...whatever pressure it was filled to...
The pressure at any point at the bottom of the tank is determined by the height of the water column above that point. The pressure is given by the formula P = ρgh, where ρ is the density of water (around 1000 kg/m^3), g is the acceleration due to gravity (around 9.81 m/s^2), and h is the height of the water column (3.5 meters in this case). Plugging in these values will give you the pressure at the bottom of the tank.
A thimble
approximately 0.8 bar
Pressure is given by the formula P = h * d * g Here h is the depth or height of surface right from bottom. Given as 3.5 m d = density of water i.e. 1000 kg/m^3 g = 9.8 m/s^2 You could plug and get the value of P at bottom in pascal