What are the bi-products of cellular respiration

Answers

Answer 1
Answer: Carbon Dioxide and Water

Related Questions

The process by which water seeps deep underground is called _____.a. infiltration b. evaporation c. precipitation d. condensation
In human,brown eye color is a dominant allele to blue color eye color
Which of the following molecules can be considered a final product in the flow of information within a cell?A) DNAB) RNAC) proteinD) lipidE) Protein or RNA can be the final product of a gene.
A group of similar cells that perform a single function is called a(an)a. nerve.c. tissue.b. organ.d. organ system.
T/F: The key decisions that must be made when developing advertising are: what is your message and who will communicate the message to the target audience. True False

15. The process that can move molecules into the cell with the aid of a protein isA. endocytosis
B. facilitated diffusion
C. passive transport
D. photosynthesis
What’s the answer?

Answers

B) facilitated diffusion

A team of researchers is diving to the ocean floor to study seaweed and fungi . Which zone of the ocean are they going to explore ?

Answers

The abyssal zone is the zone of the ocean where seaweed and fungi are present.

What is abyssal zone?

The abyssal zone is a layer of the ocean where seaweed and fungi are present. "Abyss" is a Greek word which means bottomless. This zone is located at the depths of 4,000 to 6,000 metres.

So we can conclude that the abyssal zone is the zone of the ocean where seaweed and fungi are present.

Learn more about zone here: brainly.com/question/25292087

Answer:

the abyssal zone

Explanation:

Somalia is located on the coast of Africa, east of Ethiopia.

True
False

Answers

Yes, It's true Somalia is at the very east of Athupia

During digestion, carbohydrates are converted by enzymes into

Answers

During digestion, carbohydrates are converted by enzymes into monosaccharides.

What are monosaccharides?

Monosaccharides are the simplest form of carbohydrates. They are composed of a single sugar molecule. The most common monosaccharides are glucose, fructose, and galactose.

Carbohydrates are broken down into monosaccharides through a process called glycolysis. Glycolysis is a series of chemical reactions that occur in the cytoplasm of cells. The reactions of glycolysis break down carbohydrates into smaller molecules, releasing energy in the process.

Find out more on digestion here: brainly.com/question/21470803

#SPJ6

Glucose it is defiantly Glucose.

Which series shows a correct path of energy flow in a marine food chain?

Answers

In a typical marine food chain, dinoflagellates convert energy from sunlight into food through photosynthesis and store it in their tissues. Copepods feed on dinoflagellates and incorporate this energy into their own tissues. The energy is transferred to sunfish when they feed on copepods, to small sharks that feed on sunfish, and to large sharks that feed on small sharks. 
is that what you meant by series?

Proteins have a variety of functions within a living cell. Describe at least three of the possible functions of proteins, and explain how proteins can be so diverse when there are only a limited number of different amino acids.

Answers

anonymous  3 years agoProteins are involved in almost all of the cell's functions. They can act as: Transportation: they can transport hydrophobic molecules in blood for example Regulation: protein hormones and enzymes Receptor: can act as receptors on cell surface and in the subsequent signal transduction (G-protein for instance) It is true that all proteins are made up of up to 20 amino acids, but there are several reasons for their diverse actions: -One reason is the possible sequence and number of amino acids: Met-Ser-His is different from Met-His-Ser for example. Besides, you have different chain length, for a protein is made up of long chain of polypeptide (longer than 50-70 amino acids) and can have any of the 20 amino acids with repetition, so using simple probability, this can provide up to practically unlimited combination with proteins that have chains of thousands of amino acids. -Another very crucial reason for the diversity of protein action is the conformation. A protein passes by at least 3 conformational stages before becoming mature. The straight amino acid chain is the primary structure of the protein that can never be active. Spatial modification of this primary structure results in a secondary structure, Helix or Beta-pleated sheets (or other coiling structure), that is also inactive. Further coiling and bending of the secondary structure produce a 3-dimentional conformation that is the active form of the protein. Moreover, many proteins can undergo further conformational rearrangement and combination with other protein sub-units producing a quaternary structure.