No IDEA because i have a same question
The difference between the two is that chemosynthesis uses chemicals for Energy instead of the light Energy, or sunlight, as used in photosynthesis.The difference between the two is that chemosynthesis uses chemicals instead of light energy like photosynthesis.
Plants, through the process of photosynthesis, supply matter and energy to most ecosystems by converting sunlight into chemical energy in the form of glucose. This energy is then transferred through the food chain as animals consume plants or other animals.
Matter and energy flow through the biosphere in a continuous cycle through processes such as photosynthesis, respiration, and decomposition. Matter is cycled through biogeochemical cycles like the carbon and nitrogen cycles. Energy enters ecosystems through sunlight and is transferred through trophic levels via food chains and food webs.
Producers get matter from the soil, water, and air, which they use to make food through photosynthesis. They get energy from sunlight, which is converted into chemical energy during photosynthesis.
An example of how energy moves through our ecosystem is by the wind flowing through flowers which have pollination which carries pollen to other flowers which pollinates The other plants and it also helps the bees collect the pollination to make honey
Unlike the one way flow of energy, matter is recycled within and between ecosystems.
energy is transferred through matter or space by
Matter and energy are constantly exchanged between the spheres through different processes. These processes are in the form of chemical reactions, radioactive decay, the radiation of energy, & the growth and decay of organisms.
As far as I know, no practical method has yet been found to put energy from lightning to practical use - or, for that matter, the voltage difference between the clouds and the Earth.As far as I know, no practical method has yet been found to put energy from lightning to practical use - or, for that matter, the voltage difference between the clouds and the Earth.As far as I know, no practical method has yet been found to put energy from lightning to practical use - or, for that matter, the voltage difference between the clouds and the Earth.As far as I know, no practical method has yet been found to put energy from lightning to practical use - or, for that matter, the voltage difference between the clouds and the Earth.
Sound will propagate through any matter, but not a vacuum, light will propagate through a vacuum, but only through transparent matter.
Matter cycles through ecosystems in a closed loop, as it is recycled among living organisms and the environment through processes like decomposition and nutrient uptake. In contrast, energy flows through ecosystems in a one-way direction, typically entering as sunlight, being converted into chemical energy by producers, and then moving up the food chain as consumers utilize it, ultimately dissipating as heat. This distinction underscores the sustainability of matter versus the linear nature of energy transfer.
Matter and energy are constantly exchanged between the spheres through different processes. These processes are in the form of chemical reactions, radioactive decay, the radiation of energy, & the growth and decay of organisms.
They are two completely different things. Light energy is electromagnetic waves. (EM). Potential energy is the energy stored within matter.
Unlike the one way flow of energy, matter is recycled within and between ecosystems.
Unlike the one way flow of energy, matter is recycled within and between ecosystems.
Energy and matter are interconnected through Einstein's famous equation E=mc^2, which states that energy can be converted into matter and matter can be converted into energy. Both energy and matter are fundamental components of the universe and can exist in various forms. Energy can be stored in matter and matter can release energy through processes such as nuclear reactions.
According to Einstein's famous equation E=mc^2, matter and energy are equivalent. Matter can be converted into energy, and vice versa, through chemical or nuclear reactions. This principle is central to understanding the relationship between matter and energy in the universe.