[At the moment when only the heel rests on the ground.] Ask teams to tackle this challenge. (Stiletto heels have an area of about 1/16 of a square inch. Elephants, unlike humans, walk with two feet on the ground at a time. Each foot is about 40 square inches. Thus, the woman "wins" by far more than 1,500 psi versus 75 psi.)""Humans will only have one foot on the ground while walking. Estimate that the area of the heel on a man's shoe is 10 in2. When he walks, a 200 lb. man exerts 20 psi because the weight is supported momentarily by the heel. A 100 lb. woman exerts many more psi when she wears heels. Depending on the area of the heel, she can exert as much as 1600 psi under a 'stiletto heel' ¼ inch on a side. This explains why people with wood floors don't want women walking on them in high heels.""65kg on a surface of 2 cm2 (e.g., high heel shoes) will result in a pressure of 3 250 000 Pa (beneath the high heels, if the person is standing on the surface of planet Earth). A four ton elephant, on the other hand, standing on one foot will cause a pressure of only 250 000 Pa under that foot. As an exercise try to calculate the area of the aforementioned foot. The solution can be found in this footnote1."
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A woman wearing high heels can exert greater pressure than an elephant due to the smaller surface area of the heel in contact with the ground. Pressure is defined as force divided by area (P = F/A), so when the woman's weight is concentrated on the narrow heel, it generates a high pressure despite her overall weight being much less than that of an elephant. In contrast, an elephant's weight is distributed over its larger feet, resulting in lower pressure on the ground.
High heels have a small surface area that concentrates the wearer's body weight on a tiny area, creating more pressure per square inch on the dance floor compared to an elephant's foot, which has a larger surface area that distributes its weight more evenly.
OK, I love elephants and I am almost positive this is the reason why. It's because they have very soft, spongy heels. If you throw a soft sponge on the ground, you get almost no noise. So that is why.
Penguins stand on their heels to minimize contact with the cold ice or snow, which helps conserve body heat. By shifting their weight onto their heels, they reduce the surface area in contact with the cold ground, allowing them to maintain warmth. This behavior is part of their adaptation to survive in harsh, frigid environments. Additionally, standing this way can help them balance while keeping their bodies insulated.
Penguins stand on their heels in cold conditions to minimize heat loss. By shifting their weight back, they reduce the surface area of their bodies that is in contact with the cold ground, helping to conserve body heat. This behavior, along with huddling together, aids in maintaining their body temperature in frigid environments.
The woman in high heels exerts more pressure on the ground because the weight of her body is distributed over a smaller area due to the small surface area of the heel compared to the work boots. This results in higher pressure on the ground beneath the heels.
The woman in high heels exerts more pressure on the ground because the pressure exerted is force divided by area; the smaller contact area of the heels concentrates the force, resulting in higher pressure. So, a 500N woman standing in 0.005m high heels exerts more pressure than a 500N woman standing in 0.05m work boots.
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.
High heels. The downward force in both cases is the weight of the woman. However, in high heels, the force acts on a relatively small area whereas with work boots the area is larger. As a result, the pressure is greater with high heels.Estimates suggest that a woman of average average mass, wearing stiletto heels with an area of 1 cm^2, will exert more than 10 times the pressure exerted by a 4 ton elephant standing on one foot.
A woman wearing high heels can exert greater pressure than an elephant due to the smaller surface area of the heel in contact with the ground. Pressure is defined as force divided by area (P = F/A), so when the woman's weight is concentrated on the narrow heel, it generates a high pressure despite her overall weight being much less than that of an elephant. In contrast, an elephant's weight is distributed over its larger feet, resulting in lower pressure on the ground.
the penis in her mouth and ass the penis in her mouth and ass why do you need to know. but if you insist it would be the spiked heels as there is less of it touching the ground. it would be the spiked heels because smaller areas created more pressure than larger areas.
The leg with the pointed heels exerts more pressure because the pointed heel concentrates the force over a smaller area, increasing the pressure on the ground. This can lead to discomfort and potentially affect posture and gait.
An elephant in high heels..
I would think that the woman in high heels would exert more pressure per square inch. All that 50 kg of weight is concentrated onto the small heels of the high heels, whereas with the boots it's spread out around the area of the boots, which significantly lowers the pressure. Put another way, if you go out and try to walk on extremely crunchy snow with the boots, they act like a pair of liferafts on water, in a sense, or at least for a second or two. With the heels, they sink right through the snow.
I would think that the woman in high heels would exert more pressure per square inch. All that 50 kg of weight is concentrated onto the small heels of the high heels, whereas with the boots it's spread out around the area of the boots, which significantly lowers the pressure. Put another way, if you go out and try to walk on extremely crunchy snow with the boots, they act like a pair of liferafts on water, in a sense, or at least for a second or two. With the heels, they sink right through the snow.
assuming they all weigh the same, they would be equal. if not, the heavier one would be exerting more pressure on the ground. if you are looking for an answer relating to pressure exerted in a specific spot, calculate it by surface area.
High heels have a small surface area that concentrates the wearer's body weight on a tiny area, creating more pressure per square inch on the dance floor compared to an elephant's foot, which has a larger surface area that distributes its weight more evenly.