Cell
Proximate analysis is important because it is one of the most effective ways to analyze nutritional value and energy value in food.
We do proximate analysis of the matter to know the nitrogen (protein), oil (fat), mineral, ash content etc to have an idea about the energy contained in that matter.
Cellular respiration is the process that efficiently utilizes the energy stored in glucose.
Carbohydrates are the main source of energy for humans. When consumed, carbohydrates are broken down into glucose, which our cells use to produce ATP (adenosine triphosphate) - the energy currency of the body.
The heart obtains energy primarily through the process of aerobic metabolism, where it utilizes oxygen to break down nutrients such as glucose and fatty acids to produce ATP, the energy currency of the cell. This energy is crucial for the continuous contraction and relaxation of the heart muscle that allows it to pump blood throughout the body.
Chloroplast.
Any living organism or machine that requires energy to perform work or sustain life utilizes energy. This can include activities such as movement, growth, reproduction, and metabolism. Energy is essential for driving all cellular and biochemical processes in living organisms.
what atre the non energy producimg nutrients .
A solar panel utilizes solar energy, which is energy from the sun that is converted into electricity.
Cells and carbohydrates are the two nutrients which store energy.
Chemical energy. The currency of metabolism is adenosine triphosphate (ATP) which is responsible for all human muscular mechanical activity. However, the type of energy is very simply "chemical".
Proximate analysis includes determining the moisture content, volatile matter, fixed carbon, and ash content of a sample. It provides important information about the composition and energy content of materials such as coal, biomass, and solid waste. These parameters help in understanding the suitability of a material for various applications, such as combustion or conversion to energy.