As an atom becomes an ion, its mass number
Further explanation:
The smallest unit of an element is called an atom. It is also known as the building block of matter. An atom is generally represented as , where X is the symbol of the element, A is its atomic mass or mass number and Z is its atomic number.
The number of protons present in the atomic nucleus is termed as the atomic number (Z) whereas the total number of nucleons present in the nucleus of an atom is called mass number or atomic mass (A).
When electrons are either gained or lost from the neutral atom, it results in the formation of ions. Cations are the positively charged ions that are formed due to the removal of electrons from the neutral atom. Anions are the negatively charged ions that result from the addition of electrons to the neutral atom.
Since the formation of either type of ion requires gain or loss of electrons but mass number is the total number of protons and neutrons present in the atomic nucleus, the mass number remains the same when ions are formed from their respective ions. Therefore option (3) is the correct answer.
Consider an example of a sodium atom whose atomic number is 11 so it has an electronic configuration of . It loses one electron to form its monovalent ion, which has the configuration of . The number of electrons in Na is 11 while that in is 10. But both the species have same number of protons and neutrons in them. So the mass number remains unchanged if an atom forms its ions.
Learn more:
1. Component of John Dalton’s atomic theory: brainly.com/question/2357175
2. Basis of investigation for the scientists: brainly.com/question/158048
Answer details:
Grade: Senior School
Subject: Chemistry
Chapter: Atomic structure
Keywords: atom, matter, atomic nucleus, proton, electron, neutron, cations, anions, Na, 11, Na+, electronic configuration.
HCl
BrF
NO2
Answer:
He
Step-by-step explanation:
A postulate of the Kinetic Molecular Theory is that at a given temperature, the average kinetic energy of the molecules is directly proportional to the Kelvin temperature.
KE = ½ mv² ∝ T
mv² ∝ T Divide each side by T
v² ∝ T/m
If T is constant.
v² ∝ 1/m Take the square root of each side
v ∝ 1/√m
This is an inverse relationship, so the molecules with the smallest molecular mass should have the highest average speeds.
A helium molecule has the smallest mass, so helium has the highest average molecular velocity.
Answer:
(m1+m2)v
Explanation:
where m1 is the mass of the first body
m2 is the mass of the second body
v is the velocity