They both exert the same amount of force theoretically, it's just that the force exerted on the floor by the high-heel spike is more concentrated.
High heel - less surface area, more concentrated force.
Work boot - more surface area, less concentrated force.
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.
The both exert the same overall pressure on the ground, However, the pressure per unit area is higher for the Woman because the area of contact with the ground is less than the area of contact with the animal.
The leg wearing high heels would exert more pressure on the ground due to the smaller surface area in contact with the ground compared to the leg wearing sleepers. This pressure is distributed over a smaller area, increasing the force exerted on the ground.
The pressure you exert when standing on one foot is actually your weight divided by the area of contact between your foot and the ground. Shoe size is not a relevant factor in this calculation as it does not affect the pressure. The smaller the area of contact, the greater the pressure exerted on the ground.
Fluids have a higher density than air and therefore exert more pressure than air.
Gases in Earth's atmosphere exert pressure on everything due to their weight and the force of gravity. This atmospheric pressure decreases with altitude, meaning that it's higher at sea level and decreases as you go higher up. Atmospheric pressure is essential for sustaining life on Earth.
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.
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.
When you fall and hit the ground with your elbow, the force is concentrated on a smaller area compared to hitting the ground with your back. This smaller area leads to higher pressure exerted by your elbow on impact. In contrast, hitting the ground with your back distributes the force over a larger surface area, resulting in lower pressure.
Air pressure decreases as you go higher in Earth's atmosphere. This is because there is less air above you to exert pressure downwards. At higher altitudes, the air molecules are more spread out, resulting in lower air pressure.
An ordinary human standing exerts a pressure equivalent to the body weight divided by the area in contact with the ground. On average, this pressure is about 10-15 pounds per square inch (psi).
It exerts pressure on the side with a higher concentration of water.