Answer:
a
they are diploid.
Which among the sentences contains a comma splice?
A. sentence (1)
B. sentence (2)
C. sentence (3)
D. sentence (4)
Sentence (1) contains a comma splice. Therefore, option (A) is correct.
A comma splice is an error in grammar that occurs when two independent clauses (complete sentences) are joined by a comma, without the use of a coordinating conjunction (such as "and" or "but"). This error can occur when a writer is trying to connect two ideas or sentences, but does not use the proper punctuation to do so.
In sentence (1), the clauses "New York City has many tourist attractions" and "one attraction stands head and shoulders above the rest" are both independent clauses, but they are joined by a comma instead of a coordinating conjunction. This creates a comma splice.
Learn more about common splice, here:
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A comma splice is basically a comma fault which means- when two independent clauses are joined by a comma to make one complete sentence. And an independent clause is a clause that can stand alone as a sentence.
So, here in the passage- Option C is correct one.
Lady Liberty is a woman holding a torch, it represents freedom. This sentence can be successfully broken into two complete sentences. Like- Lady Liberty is a woman holding a torch. It represents freedom.
- nitrogenous bases, sugar, and phosphates
- sugar and phosphates
- a polymer of nitrogenous bases
DNA or deoxyribose nucleic acid is a genetic material, which transmits information from the parent cell to the offspring. It is present in the nucleus or found in the nucleoid.
The correct option is:
Option C. sugar and phosphates
DNA is made up of:
Thus, the DNA backbone is made up of phosphate and pentose sugar.
Therefore, Option C is correct.
To know more about DNA, refer to the following link:
the answer is C.sugar and phosphates. yw hope that helped :)
The advantage of an electron transport chain is that a small amount of energy is released by the transfer of an electron between each pair of intermediates.
Cellular respiration has three stages: glycolysis, the Krebs cycle and oxidative phosphorylation.
During oxidative phosphorylation, the transport of electrons through a series of intermediates is used to create an electrochemical proton gradient across the inner mitochondrial membrane.
As the electrons move in the transport chain, a small amount of energy is released, which is coupled to the active transport of protons into the mitochondrial inner-membrane space.
Subsequently, this proton gradient is then used to synthesize ATP by an ATP synthase.
In conclusion, the advantage of an electron transport chain is that a small amount of energy is released by the transfer of an electron between each pair of intermediates.
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