A. they have a small surface area to volume
ratio to allow sufficient transport of molecules into and out of the cell
B. they have a large surface area to volume
ratio to allow sufficient transport of molecules into and out of the cell
Answer: B
Explanation:
Phospholipids are the class of lipids that is composed of a hydrophilic head and two hydrophilic tails derived from fatty acids that are joined with an alcohol residue.
To learn more about phospholipids follow the given link:
Answer: The correct answer is B
Explanation: There are many different types of this bacteria, all of which are heat resistant. Heat can kill the bacteria itself, but it does not kill the toxin which in return can still cause a sickness.
B)The chest cavity expands and grows larger
C)The diaphragm relaxes and moves upward
D)The lungs contract and expand
Answer:
The answer is C.
Explanation:
When you breathe out or exhale, your diaphragm relaxes and moves up into your chest cavity. As the space in your chest cavity gets smaller, the air rich in carbon dioxide is forced out of your lungs and windpipe, and then out your nose or mouth.
Answer: It’s bigger than black and white
Explanation:
We done have a hell of a year
Glucose is found at different levels of biological organization, serving as an energy source for cellular metabolism, regulated by hormones to maintain homeostasis.
Glucose is a simple sugar, also known as a monosaccharide, with the chemical formula C6H12O6. It is a primary source of energy in living organisms through cellular respiration. Glucose is commonly found in many foods and serves as a crucial energy source for the human body, especially in the form of blood sugar.
The level of glucose in biological organization can be understood at different levels of organization in living organisms. At the molecular level, glucose is a sugar molecule that serves as a source of energy for cellular metabolism. At the cellular level, glucose is broken down through a process called glycolysis to produce ATP, the energy currency of cells. At the organismal level, glucose levels are tightly regulated by hormones such as insulin and glucagon to maintain homeostasis.
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