by counting them
number of electrons
number of electrons
To calculate the number of electrons flowing per second, you can use the formula: Number of electrons = (Current in Amperes) * (1 Coulomb/1 Ampere) * (1 electron charge) Plugging in the values: Number of electrons = 1.1 * 6.242 * 10^18 electrons/second Number of electrons = 6.87 * 10^18 electrons/second
When n=2, you have an s orbital with 2 electrons, and you have 3 p orbitals each with 2 electrons (total of 6). So, total number of electrons for n=2 is 8 electrons.
The maximum number is 8 electrons in the second shell.
To calculate the number of electrons required to produce a charge of 230 microcoulombs, you can use the formula Q = N * e, where Q is the charge, N is the number of electrons, and e is the elementary charge (1.6 x 10^-19 C). Rearranging the formula, N = Q / e will give the number of electrons. Plugging in the values, N = 230 * 10^-6 / (1.6 x 10^-19) ≈ 1.44 x 10^15 electrons.
Zinc chloride has the chemical formula ZnCl2.The total number of protons is 64; the total number of electrons is also 64.The number of neutrons depends on the isotopes of Zn and Cl.
Use the formula n2 = max. number of electrons in shell. 42 = 16. 16 electrons.
The number of electrons that can occupy each shell in an atom is determined by the formula 2n2, where n is the shell number.
First you would calculate the number of protons... the number of protons = the total mass number then the number of protons should = the nummber of electrons(unless their is a number in front of the element like +1) therefore= # of protons = # of electrons
In quantum number n=3, there are a total of 18 electrons. This is because the maximum number of electrons that can occupy the third energy level (n=3) is 2n^2, where n=3. Thus, 2(3^2) = 18 electrons can fill the n=3 energy level.
The maximum number of electrons that can be present in each shell or subshell is determined by the formula 2n2, where n is the principal quantum number of the shell or subshell.