Aluminum which forms Al 3+
The number of protons in the nucleus is the most important subatomic part to examine when determining an element's identity. This is because the number of protons determines the element's atomic number, which is unique to each element.
Chlorine is the element most likely to react with aluminum, forming aluminum chloride through a chemical reaction.
Chlorine is the most reactive gas element. Chlorine is in the halogen family.
Hydrogen fluoride is the most reactive compound in this group (not element).
There is no individual sub-atomic particle that is responsible for the identity of an element. It is the way the electrons, protons and (neutrons) are arranged in an element that gives it it's identity.
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There is no such thing as an "identity of element". The identity element of multiplication, on the other hand, is the number 1.
An identity element is an element of a set which leaves other elements unchanged when combined with them. For multiplication, the identity element is 1 .
The element that is most likely to be reduced is the element that has the highest reduction potential (E°) in a given redox reaction. The element with a more positive reduction potential is more likely to undergo reduction.
The number of protons in the nucleus of an atom determines the identity of an element. This is because the number of protons uniquely identifies an element on the periodic table.
The identity of an element is determined by the number of protons.
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The number of protons in the nucleus is the most important subatomic part to examine when determining an element's identity. This is because the number of protons determines the element's atomic number, which is unique to each element.
Chlorine is the element most likely to react with aluminum, forming aluminum chloride through a chemical reaction.
0, zero, is defined as the identity element for addition and subtraction. * * * * * While 0 is certainly the identity element with respect to addition, there is no identity element for subtraction. The identity element of a set, for a given operation, must commute with every element of the set. Since a - 0 ≠ 0 - a, according to group theory, 0 is not an identity with respect to subtraction.
Arsenic.
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