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miss Akunina [59]
3 years ago
6

The reactants of cellular respiration are carbon dioxide. glucose oxygen. water.

Biology
1 answer:
Bezzdna [24]3 years ago
5 0

Answer:

False.

Explanation:

Glucose and Oxygen are reactants, but water is a product of it.

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Large proteins such as albumin remain in capillaries rather than diffusing out. T/F
JulsSmile [24]

Answer:

True.

Explanation:

Large proteins are regarded as large size molecules , or macro-molecules. And they are known to made up or contain polymers of structural units, which are known as amino acids.

In summary, large proteins are generally known to consist of several distinct protein domains, i.e structural units that fold more or less independently of each other.

Therefore , in this case, the large protein will remain in the capillary, and eventually result to the development of an osmotic pressure difference across capillary walls.

4 0
3 years ago
What the answer? Please help me i need to pass !!!
Dovator [93]
A) Active transport
Osmosis - active transport - substances move from low to high concentration
5 0
2 years ago
"What are the bacteria living in the ocean that do the nitrogen fixation, and were the first photosynthesizers on Earth providin
Bogdan [553]

Answer:

Cyanobacteria

Explanation:

Cyanobacteria were the first photosynthetic autotrophs that used water molecules as the source of electrons. Cyanobacteria were the first autotrophs that performed oxygenic photosynthesis and carried out the splitting of water.  

The process of splitting water released oxygen as a gas (O2) which was released in the atmosphere of the earth as a by-product. This led to the accumulation of oxygen in the atmosphere. Some cyanobacteria can fix nitrogen and have specialized cells called heterocyst which serve as the site for nitrogen fixation.  

7 0
3 years ago
From your laboratory data, you were able to estimate the approximate size of each of the DNA fragments that you separated on you
Helen [10]

Answer: The DNA fragments are separated in an electrophoresis gel and compared with a  weight marker, a reference standard containing DNA fragments of known lengths

Explanation:

Gel electrophoresis is a lab technique used to separate DNA according to their size. However, the DNA molecules in the cells are too large to separate through a normal electrophoresis gel, but they can be analyzed if they have previously been fragmented, for example, using restriction enzymes.

<u>Agarose gels (concentration between 0.3% and 2%) are usually used to separate DNA, because they are more porous than polyacrylamide gels. </u>

First, the gel is placed in a chamber with a buffer that allows the conduction of an electric current. One end of that chamber is connected to a negative electrode, while the other end is connected to a positive electrode. So, DNA samples are loaded into a slot next to the negative electrode and an electric current is applied that makes them move through the gel. And, one well is used for a reference standard which has DNA fragments of known lengths. Commercial DNA markers cover different size ranges, so it is important to choose one with good "coverage" in the size range in which we expect to find our fragments. Since the DNA fragments have a negative charge, they will move towards the positive electrode. Thereby, small fragments move through the gel faster than large ones.

At the end, longer fragments will stay close to the negative end as being larger, they move more slowly. And shorter fragments will be closer to the positive end of the gel, because they will move faster.

The next step is to stain the gel with a pigment that binds to the DNA, and the fragments can be seen as bands under UV light allowing us to see the DNA present at different locations along the gel. It should be noted that a single DNA fragment would not be visible. So actually. each band contains a great number of DNA fragments of the same size at the same position.

By comparing a band in a sample with the molecular weight marker, we can determine its approximate size. However, in order to be more precise, we can draw a calibration curve. You can measure the advanced of the electrophoresis front versus the logarithm of the size (lbase pairs) for each band and calculate a regression line. So the advance distances of the samples are interpolated, which will allow you to to calculate the of a specific fragment.

6 0
2 years ago
A human cell has a mutation in the gene that encodes the enzyme that generates lactate from pyruvate, rendering that enzyme comp
Liono4ka [1.6K]

Answer:

<h2>B</h2>

Explanation:

Glycolysis is the process of production of pyruvate from glucose by various enzymatic steps.

This pyruvate is further used in different ways;  as it is differently used in the presence of oxygen or in the absence of oxygen.

In the absence of oxygen, lactate is generated form  pyruvate, as given here, if this enzyme is non-functional, then lactate would not be produced.

In the presence of oxygen, pyruvate is oxidized in TCA cycle and finally through electron transport chain, energy in generated.

7 0
3 years ago
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