The correct order is this:
2.) The body absorbs food molecules after eating.
The food molecules may include carbohydrates, proteins, fats and oils, water etc. depending on the food that one eats.
4.) The levels of glucose in the blood rise.
Glucose is being absorbed by the body and introduced in the blood as one eats food rich in carbohydrates.
1.) The liver removes glucose from the blood.
As the amount of glucose in the blood increases, the liver gets it out of the blood to store it or the person will likely become diabetic
3.) The liver releases stored glucose into the blood.
Glucose is converted by the body to ATP or energy as a person exerts energy.
The temperature of the plasma gasses cools. This is because the gases lose some of their energy into light photons that disperse into space. When the plasma gases get cooler gases to become denser and sink to the bottom of the convection zone and are replaced from upwelling hotter plasma gas. The temperature at the bottom of the convection zone is approximately 200,000° C while that at the surface is 5700° C.
Answer:
In a chemical reaction mass is neither created nor destroyed
Explanation:
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Answer:
RER is involved in protein synthesis, folding, transport and modification.
Explanation:
The Endoplasmic Reticulum is an organnelle found in eukaryotic cells. They are of two types; Rough Endoplasmic Reticulum and Smooth Endoplasmic Reticulum, so named based on the appearance of their surface. The Rough Endoplasmic Reticulum (RER) obtains it rough appearance from the membrane bound ribosomes attached to it.
Due to the ribosomes that attach to them during protein synthesis, their function is very much associated with protein synthesis. They are primarily involved in protein production, which would either remain in their lumen for further modification/processing called Glycosylation (adding sugar to proteins to form glycoproteins) or be transported through secretory vesicles to the Golgi apparatus. They also fold this proteins in their inner membrane structure called cisternae.
<span>cardiorespiratory endurance and muscular strength</span>