Suppose there are 500 units of energy available for the producer level of energy pyramid approximately how many units are in it are available in the first level consumer

Answers

Answer 1
Answer: Always 10% of the energy is passed on to the next trophic level and 90% is lost... mostly heat: so if the producer has 500 units of energy then the primary consumer has 10% fromm 500 = so 50 units of energy is passed on to the next trophic level.

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Glucose can be classified as both of the following terms

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Glucose is a simple sugar that falls within the carbohydrate family. It's classified as a carbohydrate because of its similarity in structure to other carbohydrates and as a monosaccharide, indicating its status as a basic sugar unit. Glucose plays a significant role in providing energy to the body via ATP production.

Glucose can be classified as both a carbohydrate and a monosaccharide. Carbohydrates are organic molecules made up of carbon, hydrogen, and oxygen atoms.

They can exist as simple sugars, such as glucose and fructose, as well as complex sugars, like starch and glycogen. The term saccharide is derived from the Greek word for sugar and is often used to denote sugars. Monosaccharide refers to sugars that are the most basic unit like glucose and fructose.

Glucose, specifically, is a simple sugar that serves as a major source of energy for all cells. It's the most readily available form of energy for the body following the digestive process. It's transformed into ATP (Adenosine triphosphate), the main energy currency within a cell, via glycolysis.

Excess glucose is transformed into glycogen and stored in the liver for later usage. The fact that Glucose can be classed as a monosaccharide and carbohydrate stem from its structural properties and its role in providing energy to the body.

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Answer:

hope this helps :)

Explanation:

Monosaccharides contain a single unit; disaccharides contain two sugar units; and polysaccharides contain many sugar units as in polymers - most contain glucose as the monosaccharide unit. Number of Carbons: Monosaccharides can be further classified by the number of carbons present.

What role do the kidneys play in blood flow?

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The kidney filters the blood, removing any waste products in the blood such as water, salts, urea and other products too. 

I hope that's the answer you are looking for

The kidneys are the filtering devices of blood. The kidneys remove waste products from metabolism such as urea, uric acid, and creatinine by producing and secreting urine. Urine may also contain sulfate and phenol waste and excess sodium, potassium, and chloride ions. The kidneys help maintain homeostasis by regulating the concentration and volume of body fluids. For example, the amount of H+ and HCO3 - secreted by the kidneys controls the body's pH.


Robert Hook's discovery helped scientists learn more about _____.

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Robert Hooke is the scientist who discovered microscope which helps scientists more in discovering of the cells. During the invention, Hooke carefully controls the height and angle of the microscope he's inventing and also the mechanism of illumination to be make more effective.

Answer:

microscope

Explanation:

Which of the following makes up the dense outer layer of bone?a. compact bone
b. spongy bone
c. bone marrow
d. periosteum

Answers

The answer to the question is

A. compact bone

Compact bone is dense and hard, which makes it strong. Spongy bone, further inside, has many gaps and is lightweight. This allows bone to be strong and light at the same time.
The answer to your question is the compact bone .

Which aspect of a chemical reaction is affected by enzymes?

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An enzyme lowers the activation energy required to start the reaction by holding the reactants in place.

Describe the types of effects a DNA mutation
could have on the protein.

Answers

Answer:

Point mutations can cause serious changes to an organism if they change the way a protein works. A mutation in DNA alters the mRNA, which in turn can alter the amino acid chain. ... And a base substitution can also cause a silent mutation, in which the protein's function doesn't change at all.