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the right amount of water to put in a bottle rocket so it will fly high is 70 milliliters
Gravity
The forces applied to a hosepipe when the water is turned on is high pressure from the water being stopped in the rubber hose by the nozzle. The force and pressure of the water is pushing out from the inside of the hosepipe.
heat refers to the amount of high temperature in air.... and humidity refers to the amount of water in air.....
This is because there is always the same amount of air inside the balloon, providing the same amount of outwards force. Here on the ground, that outwards force is balanced by the air outside the balloon pushing on it. Higher in the atmosphere, however, there is less air, and therefore less force. Thus as the balloon ascends, there is a greater force pushing out than pushing in, and the balloon bursts.
A high amount
High Force
The third law explains this. The high speed and high pressure at which the water comes out of the hose has a reaction force. If left on the ground the hose will wiggle violently to expend part of this energy. However, if the firefighter holds on to it, he will have to bear the reaction force of the fast moving jet of water
Water molecules are linked by a high cohesive force.
A high amount
A high amount
High
The moon apparently has a force that pulls the water up at high tide.
the right amount of water to put in a bottle rocket so it will fly high is 70 milliliters
Up-thrust depends on the amount of volume of water the man displaces, therefore his shape, and not on his weight. He will sink until his weight and the volume of water displaced is the same and he would be floating. So the amount cant be calculated. Depending which is stronger, the weight of the person or the buoyancy, determines whether he sinks or floats. There will be more buoyant force with salt water than fresh water e.g.. In the Dead Sea you would float quite high.
Because it contains high amount of sodium nitrate.
the amount of salinity in the water and high temperatures