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The transfer of energy is when a producer(s) makes glucose, and a primary consumer consumes it. The secondary consumer then eats the primary consumer. Finally the tertiary consumes the secondary consumer. Tertiary consumers are usually omnivores. Secondary consumers are carnivores. Primary consumers are herbivores. Also they go down in tens. Like lets say, the producer make 10,000 cal. Then the primary consumers consumes 10% of that organism. The other 90% is used for the organism to survive. Primary consumers eat 1,000 cal. Then they are then eaten by secondary consumers. The primary consumer does not use all of the glucose. Secondary consumers eat 100 cal. Then finally the tertiary consumer eats 10 cal. If you noticed the primary consumers have more energy inside of them. Also their numbers in population are greater to balance this giant pyramid. There is also the food web. Which is a bunch of food webs intersecting.

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When food gets taken into a cell what does mitochondria do?

When a cell imports food, it is broken down and fed into various portions of the glycosidic pathway. Redox factors NAD and FAD mediate enzymatic reactions in the pathway and are reduced to NADH & FADH2 respectively. The short answer from here is that these molecules go through another pathway (electron transport chain) in the mitochondria where they are used to form a proton gradient. This gradient is used to drive ATP synthesis (the cells main energy source).


Efficiency of a respiration pathway refers to the?

Efficiency of a respiration pathway refers to the amount of energy produced by the pathway relative to the amount of energy input. A highly efficient pathway will produce more ATP (energy) per unit of substrate consumed, resulting in greater energy yield for the organism.


Is oxidative phosphorylation involved as a pathway with ATP?

Oxidative phosphorylation is involved as a pathway with ATP.Although the many forms of life on earth use a range of different nutrients, almost all carry out oxidative phosphorylation to produce ATP, the molecule that supplies energy to metabolism. This pathway is probably so pervasive because it is a highly efficient way of releasing energy, compared to alternative fermentation processes such as anaerobic glycolysis.


What is a transfer of energy through organisms?

A transfer of energy through organisms is known as an energy flow. It involves the movement of energy from one organism to another as food is consumed and digested. This process is crucial for sustaining life within an ecosystem.


The process of passing energy from one organism to another?

This process is known as energy transfer, where one organism consumes and obtains energy from another organism. This can occur through various trophic levels in a food chain or web, allowing energy to flow through ecosystems. Ultimately, energy is passed along as organisms are consumed and their energy is utilized for growth, reproduction, and survival.

Related Questions

What is the pathway of energy transfer through various stages as result of the feeding patterns of a series of organisms?

The food chain


What is the pathway of energy transfer through various stages as a result of feeding patterns of a series of organisms?

The food chain


What is the pathway of energy transfer through stages as a result of the feeding patterns of a series of organisms?

food chain


What is transfer of energy through various stages in an ecological community?

kinetic energy


How does energy transfer through a system and what are the mechanisms involved in this process?

Energy transfer through a system occurs through various mechanisms such as conduction, convection, and radiation. Conduction involves the transfer of energy through direct contact between particles. Convection involves the transfer of energy through the movement of fluids or gases. Radiation involves the transfer of energy through electromagnetic waves. These mechanisms work together to transfer energy within a system.


Where do electromagnetic waves transfer energy?

Electromagnetic waves transfer energy through oscillating electric and magnetic fields. As the waves travel through a medium or through space, they can transfer energy to objects that absorb or interact with them. This energy transfer is the basis for various applications of electromagnetic waves, such as in communication, heating, and lighting.


What do you call the transfer of energy?

Conduction is the transfer of energy from one object to another.


How does energy transfer occur?

Energy transfer occurs through various processes such as conduction, convection, and radiation. In conduction, energy is transferred through direct contact between materials. Convection involves the transfer of energy through the movement of fluids. Radiation is the transfer of energy through electromagnetic waves.


How can energy be transferred to or from a system, and what are the mechanisms involved in this process?

Energy can be transferred to or from a system through various mechanisms such as conduction, convection, and radiation. Conduction involves the transfer of energy through direct contact between objects, while convection involves the transfer of energy through the movement of fluids. Radiation is the transfer of energy through electromagnetic waves. These mechanisms play a crucial role in the process of energy transfer within a system.


How does energy pass from one thing to another?

Energy can pass from one thing to another through various processes such as conduction (transfer through direct contact), convection (transfer through fluid movement), and radiation (transfer through electromagnetic waves). Energy can also be converted from one form to another, such as from potential to kinetic energy.


Can you transfer energy through bluetooth?

No. You can not transfer energy through bluetooth.


How energy can be transported between each other?

Energy can be transported through various mechanisms such as conduction (direct contact transfer), convection (transfer through fluid movement), and radiation (transfer through electromagnetic waves). These methods allow energy to move between different objects or systems, enabling the transfer of heat, light, and other forms of energy.