What strand of mRNA would be produced from the strand of DNA shownbelow?
GCT AAG
• A. GCA UUG

B. CGA TTC
C. CGA UUC
• D. GCT AAG
What strand of mRNA would be produced from the strand - 1

Answers

Answer 1
Answer:

CGA UUC are the strands of mRNA that would be produced from the strand of DNA shown. Therefore, the correct option is option C.

What is DNA?

Deoxyribonucleic acid, or DNA, is an organic molecule with a complex molecular structure which is present in all cells, both prokaryotic and eukaryotic, as well as in a variety of viruses. For the transfer of inherited traits, DNA codes genetic information. The discovery significantly improved scientists' knowledge of DNA replication including the genetic regulation of biological processes.

Despite the fact that the molecule DNA was initially identified in 1869, its significance for the transmission of genes was not demonstrated till 1943. James Watson with Francis Crick discovered that the molecular makeup of DNA consists of a double-helix polymers, a spiral made up of two DNA strands twisted around one another, in 1953 with the help of biophysicists Rosa Lind Franklin with Maurice Wilkins. CGA UUC are the strands of mRNA that would be produced from the strand of DNA shown.

Therefore, the correct option is option C.

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Answer 2
Answer: I think C would be the right choice

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What is the distance between (–6, 2) and (8, 10) on a coordinate grid? mc017-1.jpg mc017-2.jpg mc017-3.jpg mc017-4.jpg

Answers

Ans: Distance = 16.1

Let us consider point A with coordinates (x1,y1) and point B with coordinates (x2,y2)

The distance between the two points is given as:

d(A,B) = √(x2-x1)² +  (y2-y1)²

Here: (x1,y1) = (-6,2)

(x2,y2) = (8,10)

d = √(8-(-6))² + (10-2)²

   = √196+64 = √260 = 16.1

The distance between  (–6, 2) and (8, 10) is 2√65

Distance Formula

The distance formula is used to calculate the distance between two points(x₁, y₁)(x₂, y₂).

Therefore,

  • d = √(x₂ - x₁)²+(y₂ - y₁)²

x₁ = -6

x₂ = 8

y₁ = 2

y₂ = 10

Therefore,

d = √(8+6)²+(10-2)²

d = √(14)² + (8)²

d = √196 + 64

d = √260

d = √4 × 65

d = 2√65

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If two or more elements or chemical compounds come into contact with one another and there is enough __________ present, a chemical change may take place.

Answers

Final answer:

A chemical change or reaction between elements or compounds may occur when there is enough energy present. This can be in the form of heat, light, or electricity. An example of this is the reaction between hydrogen and oxygen to form water, which requires a spark.

Explanation:

If two or more elements or chemical compounds come into contact with one another and there is enough energy present, a chemical change may take place. This is because a chemical reaction, which represents a chemical change, requires energy to break the bonds of the reactants and form new bonds in the products. This energy can be in various forms such as heat, light, or electricity.

For example, the reaction between hydrogen and oxygen to form water is a chemical change that requires energy in the form of a spark. On the other hand, an exothermic reaction, such as the combustion of gasoline, releases energy in the form of heat and light.

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Answer:

energy

Explanation:

"If two or more elements or chemical compounds come into contact with one another and there is enough energy present, a chemical change may take place." this was on a science lesson, it's correct.

Reaction A has a high activation energy, whereas reacton B has a low activation energy. Which of the statements about reaction A and reaction B are true? Reaction B is likely to occur at a faster rate than reaction A. Reaction A is more likely to occur at all than reaction B. Reaction B is more likely to occur at all than reaction A. Reaction A is likely to occur at a faster rate than reaction B.

Answers

The statement about reaction A and reaction B are true is: A. Reaction B is likely to occur at a faster rate than reaction A.

An activation energy can be defined as the minimum quantity of energy that must be provided for reacting chemical elements, so as to undergo a chemical reaction. Thus, the activation energy of a chemical reaction must first of all be reached by its combining chemical elements (reactants) before it can start or begin.

As a general rule, the lower the activation energy of a chemical reaction, the faster is the rate of a chemical reaction and vice-versa. This ultimately implies that, the activation energy of a chemical reaction should be lowered, in order for it to occur fast (quickly) enough over a short period of time.

In conclusion, reaction B is likely to occur at a faster rate than reaction A because of its low activation energy.

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Answer:

The correct answer is:

Reaction B is more likely to occur at all than reaction A.

Explanation:

The activation energy in chemistry is the smallest amount of energy required to cause chemical or nuclear reaction in the reactants in chemical or nuclear systems. The activation energy is denoted by E_(a), and it is measured in Joules (J), KiloJoules (KJ) or Kilocalories per mole (Kcal/mol)

The activation energy can be thought of simply as the minimum amount of energy required to overcome a barrier that prevents a reaction from occurring, hence, from our question, if Reaction A has a high activation energy, it means that the barrier to be overcome before a reaction will occur is large, meaning that the reaction system is more stable and the reaction is less likely to occur than Reaction B which has a low activation energy, meaning that just a relatively small amount of energy, when applied to the reaction system, will initiate a reaction, making it more likely to occur than reaction A.

You should also note that catalysts are substances that are capable of reducing the activation energy of a system, but remains unchanged at the end of the system.

1.Potato plants carry out photosynthesis to make molecules of glucose. If they can’t use all the glucose they make in a day, they store it as starch. Explain how they convert glucose to starch.2.A few days later, a potato plants has not made enough glucose to feed itself for the day. Explain how it gets glucose from starch it is storing. (Include the name of the process it uses)

Answers

Answer:

Question 1

Answer ;

in photosynthesis process, the plant have the ability to absorb the light using their pigment called as chlorophyll.  this light energy with the help of many enzymes will help the conversion of CO2 and water in to glucose  which is then transported to different parts of the plants for its usage in different cellular processes and growth. The excess of glucose which is not utilized and metabolized immediately is converted to complex sugar molecules and stored in the plant in the form of Starch to fulfill the future needs.

Question 2

Answer ;

starch are stored for many purpose. the pathway used to create and store glucose in the form of starch is a reversible process. if potato plant have not made enough glucose for the day to feed itself, the starch which was stored will be catabolized using different cellular enzymes in to glucose.the starch which is stored is broken down and needed in those conditions and days when there is no sunlight or cloudy weather for days.

Initial temperature of metal= 100 C°Initial temperature of water= ? C°
Final temperature of both =? C° (Copper)

Answers

Answer:

1.)100

2.)22.7

3.)24.6

Explanation:

EDGE2020

Water is 22.4

Final for both us 27.1

Explanation:

I just finished this part of the lab

Whats the difference between china and Europe

Answers

Answer:

the difference is they arnt close

Explanation:

Answer:

China is communist, Europe isn't.

Explanation: