on your toes
Sea water will exert more pressure than river water due to its higher density. The pressure exerted by a fluid is directly proportional to its density, so sea water, being more dense than river water, will exert a greater pressure.
An arbor press can typically exert pressure ranging from 1 to 5 tons, depending on the size and design of the press. However, larger and more heavy-duty arbor presses can exert even higher pressure, up to 20 tons or more.
Thicker needles are designed to exert more pressure as they have a larger surface area interacting with the material being sewn. Thicker needles are typically used for heavier fabrics or multiple layers.
Yes, someone wearing high heels may exert more pressure because the weight is concentrated on a smaller surface area compared to Wellington boots, which distribute the weight more evenly. This can result in higher pressure on the ground.
Fluids exert pressure on a container due to the weight of the fluid above it pushing down. This pressure is distributed evenly in all directions, causing the container to experience a force perpendicular to its surface. The pressure increases with depth, as more fluid weight is pressing down.
Total pressure is the same in either case, but on your toes, you exert more pounds per square inch, on fewer square inches.
Sea water will exert more pressure than river water due to its higher density. The pressure exerted by a fluid is directly proportional to its density, so sea water, being more dense than river water, will exert a greater pressure.
An arbor press can typically exert pressure ranging from 1 to 5 tons, depending on the size and design of the press. However, larger and more heavy-duty arbor presses can exert even higher pressure, up to 20 tons or more.
Thicker needles are designed to exert more pressure as they have a larger surface area interacting with the material being sewn. Thicker needles are typically used for heavier fabrics or multiple layers.
Water is more dense than air is.
Yes, a solid will exert more pressure at the bottom of a liquid compared to the top due to the increase in depth and the weight of the liquid above it. This is known as hydrostatic pressure, which increases with depth in a fluid.
Sorry - it exerts more pressure than a flt heel.
Fluids have a higher density than air and therefore exert more pressure than air.
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Yes, someone wearing high heels may exert more pressure because the weight is concentrated on a smaller surface area compared to Wellington boots, which distribute the weight more evenly. This can result in higher pressure on the ground.
Because your hand can get a better grip and exert more torque or pressure.
imagine that all the air around you is puting pressure on you. Then, when you go into a fluid, you can feel the pressure of the air and the water. The deeper you go, the more pressure is on top of you and eventually, you will get crushed.