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The Sun's energy is converted into food by plants through photosynthesis. When you consume plants or animals that have consumed plants, you obtain the energy from the Sun in the form of calories and nutrients. This energy is then used by your body for various functions to keep you alive and healthy.
In a parallel circuit, energy is passed through multiple paths simultaneously. Each path receives the same voltage but may have different currents flowing through them. This allows devices connected in parallel to operate independently of each other.
Plants convert sunlight into energy through photosynthesis, and runners consume plants or plant-eating animals for energy. So, the energy that runners derive from the sun is indirect, as it is passed along the food chain from plants to animals to humans.
Energy from the sun is captured by plants through photosynthesis. When humans consume plant-based foods, they obtain the energy stored in those plants. By eating a balanced diet, humans can indirectly harness the sun's energy for their own use through the food chain.
The form of energy passed along from organism to organism in a food chain is chemical energy. This energy is derived from the organic compounds present in the food consumed by each organism.
it would be 20 calories = 10%
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In a typical ecological energy transfer, only about 10% of the energy from one trophic level is passed on to the next. Therefore, if a snake receives 200 calories of energy from eating a rabbit, approximately 20 calories (10% of 200) would be transferred to a hawk that preys on the snake. This reflects the inefficiency of energy transfer in food chains.
In a food chain, energy transfer between trophic levels typically follows the 10% rule, meaning only about 10% of the energy from one level is passed on to the next. If a snake receives 200 calories from eating a rabbit, it would likely utilize some of that energy for its own metabolic processes, leaving around 20 calories available. Therefore, if a hawk then eats the snake, it would receive approximately 20 calories of energy.
When a snake consumes a rabbit and receives 200 calories of energy, only a portion of that energy will be transferred to a hawk that eats the snake. Typically, about 10% of the energy at one trophic level is passed on to the next level due to energy loss through metabolic processes, heat, and waste. Therefore, if the hawk eats the snake, it would receive approximately 20 calories of energy from the original 200 calories consumed by the snake.
rick was here
When a rabbit consumes 500 calories of plants, not all of those calories will be passed on to a hawk that eats the rabbit. Typically, only about 10% of the energy from one trophic level is transferred to the next due to energy loss through metabolism, heat, and waste. Therefore, if a hawk consumes the rabbit, it would receive approximately 50 calories from the original 500 calories consumed by the rabbit.
You would get more energy from eating the corn directly. In general, only about 10% of the energy gets passed up the food chain which means that you only get 10% of the energy that was originally contained in the corn by eating the cow that ate the corn.
You would get more energy from eating the corn directly. In general, only about 10% of the energy gets passed up the food chain which means that you only get 10% of the energy that was originally contained in the corn by eating the cow that ate the corn.
Primary producers, such as plants, receive the most energy from the sun through photosynthesis. They convert sunlight into chemical energy, which is then passed on to organisms higher up in the food chain.
To support Pacific herring requiring 100,000 calories, a significant amount of phytoplankton is needed due to the energy transfer inefficiencies in aquatic food webs. Generally, only about 10% of the energy is passed on from one trophic level to the next. Therefore, to provide 100,000 calories to the herring, approximately 1,000,000 calories of phytoplankton would be required, accounting for this energy loss.