The range of cells receiving the content of copied cells is called the ____.

Answers

Answer 1
Answer:

The range of cells receiving the content of copied cells is called the destination area. The correct option is a.

What is a cell?

The smallest unit of life is a cell. It is composed of biomolecules. Every living thing is composed of several cell units. Different sorts of creatures contain various types of cells.

The cell divides to form the other cell. This process if called cell division. Cell division occurs during mitosis. All eukaryotic cells go through the process.

There are four stages to the process. The cell divides during the procedure. A daughter cell that is identical to the parent cell is created.

The destination region refers to the set of cells that will get copied cell content. The cell copies the full contest for another cell.

Thus, the correct option is a. destination area.

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The question is incomplete. Your most probably complete question is given below:

a. destination area.

b. final cell

c. receiving range

d. receiver cell

Answer 2
Answer: The range of cells receiving the content of copied cells is called the "destination area." The cells are receiving the content so that would be the copied cells destination

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Imagine you are in a laboratory. You are exploring the following reaction: A + B → C When the product C is created, bubbles form. When 10mL of A is added to 10mL of B, the reaction takes twenty seconds. Your teacher gives you three unknown substances (X, Y, and Z), one of which is a catalyst for the reaction. Design an experiment to test substances X, Y, and Z to determine which one is a catalyst for the reaction.
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A chemical reaction is the only way to separate a? a.element b.pure substance c.mixture d.solution

Answers

I believe it's B. Pure substance, including that of compounds. An element can't be separated or broken down any further in terms of chemical composition. While some mixtures and solutions can be separated by physical means. Not solely relying on a chemical reaction.

Answer: B

Explanation:

How does the greenhouse effect occur?

Answers

Answer:

green house effect warm up the temprature of earth. the sunlight which reflect back to space some of those are absorbed by greenhouse gasses which results green house effect.as a result the temperature increase and the level of CO2 increases this is the work of green house effect.

Answer:

the greenhouse effect happens when greenhouse gases are trapped in a close dspace, and cause humidity and heat to rise. This happens outside two, within the atmosphere, and makes icebergs melt . It helps create global warming

Explanation:

A plant's photoperiod is the amount of time each day that the plant receives sunlight. A plant with a 12L:12D photoperiod receives 12 hours of light and 12 hours of dark per day. A researcher investigated whether photoperiod affects the development of flower buds in chrysanthemums, a type of flowering plant. She maintained three samples of chrysanthemums that did not initially have any flower buds under different photoperiods. After two weeks, the researcher recorded the presence or absence of flower buds in each sample. The researcher's results are shown in the table. Sample Photoperiod Results 1 13L:11D fully developed flower buds formed on all plants 2 14L:10D partly developed flower buds formed on some plants 3 15L:9D no buds formed on any plant Which statement is best supported by the researcher's findings?

Answers

Answer:

13L:11D

Explanation:

Based on the photoperiod there are two types of plants -  

a) Short day plant  

b) Long day plant

Here the term short and long day do not mean that the provided length of day are the critical length of day required for reproduction. But opposite to that it means that the length of the day required for reproduction must be  

a) Shorter than the defined length of day for short day plant  

b) And longer than the defined length of day for long day plant  

Chrysanthemums  is a short day plant and thus option 1 with 13L:11D will produce fully developed flower buds

Option A is correct 13L:11D

Final answer:

The researcher's findings illustrate that photoperiod greatly affects the development of chrysanthemum buds, with longer periods of light exposure reducing bud formation. The mechanism behind this is likely due to photoperiodism, a biological response that allows plants to regulate their growth based on day length.

Explanation:

The researcher's findings suggest that the photoperiod, or duration of light exposure, significantly impacts the development of flower buds in chrysanthemums. In the experiment, chrysanthemums with a 13L:11D photoperiod produced fully developed flower buds. In contrast, the plants with a 14L:10D photoperiod produced only partly developed buds and those with a 15L:9D photoperiod did not develop any buds. It is evident from these results that there is a decrease in bud formation with an increase in light hours. Chrysanthemums, therefore, seem to need a specific balance of light and darkness for optimal flower bud development.

The mechanism behind this is likely related to photoperiodism, a biological response to the timing and duration of day and night that controls flowering and other growth in plants. Plants use the phytochrome system to sense changes in day length, which is an essential indicator of season. This system allows them to regulate their physiological activities, such as flowering, accordingly. So, the results of this study underline the importance of photoperiodism in flowering plants.

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An ecosystem would best be described as a geographical areawhere only plants live.
where plants, animals, landscape and climate all interact.
where plants, animals, landscape and climate are all independent of each other.
where organisms are independent of each other.

Answers

Where plants, animals, landscape and climate are all independent of each other.

How does adp convert to atp

Answers

It is a cycle. The molecule of ATP has 3 phosphates (that is why it is ATP - adenosine triphosphate) and when the bond between the second and third phosphate is broken, energy is released. This forms a new molecule, ADP which only has 2 phosphates (ADP - adenosine diphosphate). See the attached diagram for more information.  
1 phosphate group is added to ADP, and energy is required.ATP is formed

The genetic code is based on sequences of three bases called

Answers

The discoverers of DNA were not James D Watson and Francis Crick. They are the first scientist to formulate an accurate description of the DNA’s (deoxyribonucleic acid) complex , double-helical structure. They discovered that base pairing nucleotides must be; adenine and thymine; and cytosine and guanine. These base pairs are held together by a hydrogen bond, atype of chemical reaction that s easy to break and easy to reform. The statement is “DNA is a double helix made of two strands linked together with hydrogen bonds.”

The answer is: codons.