Chlorine
Chlorine is more electronegative than carbon. Chlorine has a higher electronegativity value on the Pauling scale, indicating its greater ability to attract electrons in a chemical bond compared to carbon.
It is Nitrogen, Sulfur, Oxygen, and Chlorine
No. A carbon-chlorine bond is a polar covalent bond.
There are several compounds that could contain all of those elements, and billions if not all are required.
In DNA, the essential elements are carbon, hydrogen, oxygen, nitrogen, and phosphorus. In ATP (adenosine triphosphate), the essential elements are carbon, hydrogen, oxygen, nitrogen, and phosphorus as well.
Chlorine is a group 17 element and has the highest electronegativity among the elements given.
Oxygen, carbon, hydrogen, nitrogen, calcium, phosphorus, chlorine.
Chlorine is more electronegative than carbon. Chlorine has a higher electronegativity value on the Pauling scale, indicating its greater ability to attract electrons in a chemical bond compared to carbon.
It is Nitrogen, Sulfur, Oxygen, and Chlorine
The 13 most common elements in the human body are oxygen, carbon, hydrogen, nitrogen, calcium, phosphorus, potassium, sulfur, sodium, chlorine, magnesium, iron, and zinc. These elements make up about 99% of the body's mass.
No. A carbon-chlorine bond is a polar covalent bond.
There are several compounds that could contain all of those elements, and billions if not all are required.
Helium, Boron, Carbon, Nitrogen, Oxygen, Fluorine, Neon, Silicon, Phosphorus, Sulphur, Chlorine, and Argon are the main ones
Carbon, chlorine and fluorine.
No. Chlorine is generally thought to be more electronegative than carbon. (However, there is some theoretical evidence for S(CH3)6 - hexamethyl persulfurane, which is predicted to be stable. Silico experiments reveal that, in this compound the negative charges will be located in the carbon atoms. So it is possible that, in Cl(CH3)3 or even Cl(CH3)5, Carbon may be more electronegative.)
A nucleotide contains the elements carbon, nitrogen, hydrogen, oxygen and phosphorus.
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