Which of the following species has the greatestnumber of electrons?
1. Cl1−
2. Co4+
3. Fe2+
4. V
5. Sc2−

Answers

Answer 1
Answer:

Answer: Option (3) is the correct answer.

Explanation:

When there is a negative charge on an atom then we add the charge with the number of electrons. Whereas when there is a positive charge on an atom then we subtract the charge from the number of electrons.

Atomic number of chlorine is 17. So, number of electrons present in Cl^(-) is 17 + 1 = 18 electrons.

Atomic number of cobalt is 27. So, number of electrons present in Co^(4+) is 27 - 4 = 23 electrons.

Atomic number of iron is 26. So, number of electrons present in Fe^(2+) is 26 - 2 = 24 electrons.

Atomic number of vanadium is 23. So, number of electrons present in V is 23 electrons.

Atomic number of scandium is 21. So, number of electrons present in Sc^(2-) is 21 + 2 = 23 electrons.

Thus, we can conclude that out of the given species, Fe^(2+) has the greatest  number of electrons.

Answer 2
Answer:

Among the given species, \boxed{3.{\text{ F}}{{\text{e}}^(2 + )}} has the greatest number of electrons.

Further Explanation:

The arrangement of electrons in various shells and sub-shells of an atom is called electronic distribution. The electron filling is done by keeping following rules and principles in mind:

(i). Aufbau principle

According to this, electron filling takes place in orbitals in the increasing order of their respective energies. The energy order of orbitals is as follows:

1s < 2s < 2p < 3s < 3p < 4s < 3d < 4p < 5s < 4d < 5p < 6s < 4f < 5d < 6p < 7s < 5f < 6d < 7p

 

(ii) Hund’s rule

No electron will b epaired until each orbital is singly occupied.

(iii) Pauli’s exclusion principle

It states that two electrons can never have all the four quantum numbers same. The value of spin quantum number for both electrons must b edifferent.

1. According to the periodic table, the atomic number of Cl is 17 so its electronic configuration is 1{s^2}2{s^2}2{p^6}3{s^2}3{p^6}3{d^7}4{s^2}. It gains an electron to form {\text{C}}{{\text{o}}^(4 + )} ion and its configuration becomes 1{s^2}2{s^2}2{p^6}3{s^2}3{p^6}3{d^5}. So it has a total of 18 electrons.

2. According to the periodic table, the atomic number of Co is 27 so its electronic configuration is 1{s^2}2{s^2}2{p^6}3{s^2}3{p^6}3{d^7}4{s^2}. It loses four electrons, two 4s electrons and two 3d electrons to form   ion and its configuration becomes 1{s^2}2{s^2}2{p^6}3{s^2}3{p^6}3{d^5}. So it has a total of 23 electrons.

3. According to the periodic table, the atomic number of Fe is 26 so its electronic configuration is 1{s^2}2{s^2}2{p^6}3{s^2}3{p^6}3{d^6}4{s^2}. It loses two 4s electrons to form {\text{F}}{{\text{e}}^(2 + )} ion and its configuration becomes 1{s^2}2{s^2}2{p^6}3{s^2}3{p^6}3{d^6}. So it has a total of 24 electrons.

4. According to the periodic table, the atomic number of V is 23 so its electronic configuration is 1{s^2}2{s^2}2{p^6}3{s^2}3{p^6}3{d^3}4{s^2}. So it has a total of 23 electrons.

5. According to the periodic table, the atomic number of Sc is 21 so its electronic configuration is 1{s^2}2{s^2}2{p^6}3{s^2}3{p^6}3{d^1}4{s^2}. It gains two electrons to form {\text{S}}{{\text{c}}^(2 - )} ion and its configuration becomes 1{s^2}2{s^2}2{p^6}3{s^2}3{p^6}3{d^3}4{s^2}. So it has a total of 23 electrons.

Therefore, the maximum number of electrons is present in {\text{F}}{{\text{e}}^(2 + )} (24).

Learn more:

  1. Determine the ion with configuration  : brainly.com/question/7599542
  2. Identification of element which has electron configuration  :brainly.com/question/9616334

Answer details:

Grade: High School

Chapter: Electronic configuration of the elements

Subject: Chemistry

Keywords: electrons, Cl-, Co4+, Fe2+, V, Sc2-, 17, 27, 26, 21, 23, electronic configuration.


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(B) Na^+ acceptor
(C) H^+ donor
(D) Na^+ donor

Answers

A. Proton acceptor and this is according to the bronsted Lowry theory

Gases tend to diffuse because

Answers

Gases tend to diffuse due to concentration gradient. Diffusion is generally cause by concentration gradient to achieve equilibrium. It moves from high concentration to low concentration. This is best describe Fick's Law.

Most plastics don't biodegrade

Answers

that is false because every type of plastic can biodegrade

Answer:

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Why is gold preferred as a superior metal over silver and bronze?

Answers

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How could you test the law of conservation of matter? ( No atoms can be created or destroyed when under physical or chemical change)

Answers

Answer:

By measuring the total mass of the matter before as well as after any physical or chemical change.

Explanation:

As mentioned, according to the law of conservation of matter, no atoms can be created or destroyed when under physical or chemical change.

Naturally, all the matters have some mass associated with it.

To verify the law of conservation of matter, at first, measure the mass of matter before it underwent any physical or chemical change. Then, again, measure the mass of the matter after the physical or chemical change.

Now, observe both the mass, both must be equal. This verifies the law of conservation of matter.

Which substance, when dissolved in water, forms a solution that conducts an electric current?(1) C2H5OH (3) C12H22O11
(2) C6H12O6 (4) CH3COOH

Answers

Answer: Option (4) is the correct answer.

Explanation:

Substance which are able to conduct electricity are ionic in nature. This means that only ionic substances can conduct electricity because they dissociate into ions.

Therefore, out of the given options only acetic acid (CH_(3)COOH) is ionic in nature.

         CH_(3)COOH \rightleftharpoons CH_(3)COO^(-) + H^(+)

ThoughCH_(3)COOH is a weak acid but it does dissociate into ions and hence, it forms a solution that conducts an electric current.