A skier at the top has more potential energy
Molecules have more kinetic energy when they are moving. This energy is proportional to their speed and mass, making them collide with each other and their surroundings.
There needs to be more organisms at the bottom of the pyramid of numbers because each trophic level requires energy from the level below it, resulting in a decrease in available energy as you move up the food chain. This means that more organisms are needed at lower levels to support the energy requirements of those at higher levels.
The electron closest to the nucleus has the lowest energy level. Since electrons are attracted to the nucleus, it takes energy to make them orbit at a greater distance (and even more energy to remove them from orbit entirely).
chemosynthesis
Dark surfaces are the best absorbers of heat because they absorb a wider range of wavelengths of light, converting them into heat energy. Light surfaces, on the other hand, reflect more light and thus absorb less heat.
A skier at the top of a hill would have more potential energy due to their elevated position compared to a skier at the bottom of the hill. This potential energy can be converted into kinetic energy as the skier descends the hill.
Half way down the slope, the skier has kinetic energy and potential energy. At the top of the slope, before he starts moving, he only has potential energy. At the bottom of the slope, he has only kinetic energy. This is an extremely simplified explanation, but it's probably the answer that your teacher is looking for. Hope that helps.
bottom
Just standing there, a skier on the top of the mountain has potential energy. If she uses her poles to push-pull before taking off, she's building up a small amount of kinetic energy. If a skier is then moving down the mountain, his movement downward is kinetic energy which increases as his speed increases. If he or she collides with an immovable object while skiing, kinetic energy abruptly ends. If he or she takes off from the top of the mountain and an avalanche happens to hit at the same time, the kinetic energy of the avalanche engulfs the skier and overpowers the lower kinetic energy of the skier. The skier and avalanche become as if one in the kinetic force of the avalanche--until the skier collides with something or is buried, and thus is separated from the avalanche's kinetic energy which continues until the avalanche stops.
The equation you provided is not clear. Can you please provide more information or rephrase the question?
To calculate the speed of a skier going down a slope, you can use the conservation of energy principle. The potential energy at the top of the slope (mgh, where m is mass, g is gravitational acceleration, and h is height) converts to kinetic energy (0.5 mv²) at the bottom. By setting these two energies equal, you can solve for the speed (v) using the formula v = √(2gh). Additionally, factors like friction and air resistance can affect the actual speed, so they may need to be considered for a more accurate calculation.
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Molecules have more kinetic energy when they are moving. This energy is proportional to their speed and mass, making them collide with each other and their surroundings.
Yes, More potential energy yES
A book on the bottom shelf usually has more kinetic energy because it has the potential to fall from a greater height than a book on the top shelf. As an object falls, its potential energy is converted to kinetic energy.
Titania always speaks in verse, sometimes unrhymed blank verse and sometimes rhymed verse.. Bottom usually speaks in prose but when he is being Pyramus he does speak in rhymed iambic pentameters as well as other rhythms
It represent the food pyramid and the bottom organism eats less as the top organism eats more.(basically everything on the bottom)