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Serga [27]
3 years ago
15

I NEED HELP please :3

Biology
1 answer:
irakobra [83]3 years ago
4 0

Answer:1.Anaphase

2.Interphase

3.Prophase

4.?

5.chromatid

6.Centromere

7.Telophase

8.?

9.Methaphase

10.?

Explanation:

This will be the answer Thank you good luck.

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Bacteria and humans use the same DNA components, and both kinds of cells also perform transcription and translation. Which of th
Ludmilka [50]

Answer:

The correct answer is b) Bacteria are able to transcribe and translate human DNA. and thus, they potentially could produce human proteins.

Explanation:

Bacteria could produce human proteins, but they don't need them, so their physiological mechanism produces only the proteins and secondary metabolites needed.

4 0
3 years ago
What do mantises do to attach their prey?
Allisa [31]
They use their front legs to snare their prey since they have fast reflexes.
6 0
3 years ago
Similar families can be grouped into
Dennis_Churaev [7]

Answer:

Similar families can be grouped into orders

3 0
3 years ago
The chemical stockroom also contains a solution labeled unknown. This solution contains a 0.10M solution of a "synthetic base".
arsen [322]

Answer:

AT indicates A and T bound together, AC indicates A and C bound together, etc.

Explanation:

In the '30s and '40s, biologists knew that the agent for heredity was in thread-like chromosomes, made of the molecule DNA. They also knew that DNA was made of four bases, (A)denine, (G)uanine, (C)ytosine, and (T)hymine. The race was on to be first to determine how they fit together, and how they carried hereditary information.

DNA

In 1953, James Watson and Francis Crick unraveled the mystery, by showing that DNA had the double-helix structure shown to the left. The information is stored as the sequence of bases: G, C, A, and T, on the strand of DNA running up one side of the double helix. On the opposing strand, the sequence is mirrored such that a C is paired with every G, and an A is paired with every T. This pairing is essential to the ability of DNA to replicate and to send its information out into the cell to direct protein synthesis.

You will be provided with stock solutions of all four bases. These are labeled dAMP for A, dCMP for C, dGMP for G, and dTMP for T to reflect the fact that these bases are only soluble as single bases in their d-MonoPhosphate form. Each of these solutions has a concentration of 0.10M. In the following, feel free to combine these solutions in any way you see fit. Note that the "Solution Info" window shows the concentrations of all chemical species in the currently-selected container. In this window, AT indicates A and T bound together, AC indicates A and C bound together, etc.

7 0
3 years ago
Suppose that b(t)b(t) measures the number of bacteria living in a colony in a petri dish, where bb is measured in thousands and
kotegsom [21]

Answer:

To begin your question is incomplete, since it would be missing as many days as you want to pass to reach a certain number of bacteria ...

But I can explain to you that with what you put if you have the complete question in your notebook:

Bacteria are usually grown in petri dishes, which are glass capsules where you generate a perfect medium (culture) with all the necessary nutrients for them to live, grow and reproduce ... The bacteria we are talking about in this problem says that reproduce with an exponential of 3, this means that if there are 6000 bacteria today, we multiply that value by 3 and we already know how many there will be tomorrow (3x6,000 = 18,000), if we continue with the same analysis, the day after tomorrow there will be many more ... why? Because the account you would have to do is tomorrow's value multiplied by 3, that is, 18,000x3 = 54,000 !!!

Explanation:

It is important to know that growth with exponent 3 will always generate that the bacterial multiplication of each day is by 3, on the other hand, this serves to understand the magnitude with which bacteria populations grow, and with the rapidity that they do. .

So as a summary we would have to:

today you have 6,000 bacteria

tomorrow 18,000 bacteria (6,000x3)

the day after tomorrow 54,000 bacteria (18,000x3) ...

In just 3 days the bacteria reached a number of 54,000, now look in your folder what number of days your teacher asked you and continue with the account!

5 0
3 years ago
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