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Friday, August 14, 2026

Define Electronegativity and how it differs from Electron Gain Enthalpy.

📚 Chapter: Classification of Elements and Periodicity in Properties

📘 Definition of Electronegativity

Electronegativity is the tendency of an atom in a chemical bond to attract the shared pair of electrons towards itself.

Electronegativity = Attraction for shared electrons in a chemical bond

It is a relative, dimensionless property and is commonly expressed using the Pauling scale.

⚛️ Electron Gain Enthalpy

Electron Gain Enthalpy (EGE) is the enthalpy change that occurs when an isolated gaseous atom gains an electron to form a gaseous negative ion.

X(g) + e⁻ → X⁻(g)

It is an energy-related quantity and is generally expressed in kJ mol⁻¹.

🔍 Difference Between Electronegativity and EGE

Electronegativity Electron Gain Enthalpy
Tendency of an atom to attract shared electrons in a chemical bond. Energy change when an isolated gaseous atom gains an electron.
Applies to an atom in a chemical bond. Applies to an isolated gaseous atom.
It is a relative and dimensionless quantity. It is an enthalpy/energy change.
Usually expressed on scales such as the Pauling scale. Expressed in kJ mol⁻¹.

✅ Final Answer

Electronegativity is the tendency of an atom in a chemical bond to attract the shared electron pair towards itself.

Electron Gain Enthalpy is the enthalpy change when an isolated gaseous atom gains an electron.

The main difference is that electronegativity describes the attraction for shared electrons in a bond, whereas EGE describes the energy change associated with gaining an electron by an isolated gaseous atom.

20 MCQs with Answers

1. Electronegativity is the tendency of an atom to:

A) Lose neutrons
B) Attract shared electrons
C) Lose protons
D) Emit radiation
✅ Answer

B) Attract shared electrons


2. Electronegativity is associated with:

A) Isolated atom only
B) Atom in a chemical bond
C) Nucleus only
D) Free neutron
✅ Answer

B) Atom in a chemical bond


3. Electronegativity is a:

A) Dimensionless quantity
B) Quantity measured in kg
C) Quantity measured in litre
D) Quantity measured in metre
✅ Answer

A) Dimensionless quantity


4. The Pauling scale is used to measure:

A) Atomic mass
B) Ionization energy
C) Electronegativity
D) Atomic radius
✅ Answer

C) Electronegativity


5. Electron Gain Enthalpy involves:

A) Loss of an electron
B) Gain of an electron
C) Loss of a proton
D) Gain of a neutron
✅ Answer

B) Gain of an electron


6. EGE is generally expressed in:

A) kJ mol⁻¹
B) metre
C) kg
D) litre
✅ Answer

A) kJ mol⁻¹


7. EGE is defined for:

A) An isolated gaseous atom
B) A molecule only
C) A solid only
D) A liquid only
✅ Answer

A) An isolated gaseous atom


8. Which property is relative and dimensionless?

A) EGE
B) Electronegativity
C) Enthalpy
D) Ionization enthalpy
✅ Answer

B) Electronegativity


9. Which quantity represents an energy change?

A) Electronegativity
B) Electron Gain Enthalpy
C) Atomic number
D) Electronegativity scale
✅ Answer

B) Electron Gain Enthalpy


10. In electronegativity, the electrons being attracted are:

A) Core electrons
B) Shared/bonding electrons
C) Nuclear electrons
D) Neutrons
✅ Answer

B) Shared/bonding electrons


11. Which element has the highest electronegativity?

A) F
B) Cl
C) O
D) N
✅ Answer

A) Fluorine


12. Electronegativity generally increases:

A) Down a group
B) From left to right across a period
C) From right to left only
D) Randomly
✅ Answer

B


13. Electron gain enthalpy is concerned with:

A) Attraction of shared electrons
B) Energy change on electron addition
C) Bond length only
D) Atomic mass only
✅ Answer

B


14. Which statement is correct?

A) Electronegativity has units of kJ mol⁻¹
B) EGE is dimensionless
C) Electronegativity is dimensionless
D) Both are identical quantities
✅ Answer

C


15. The process represented by X(g) + e⁻ → X⁻(g) is related to:

A) Electronegativity
B) Electron Gain Enthalpy
C) Atomic radius
D) Metallic character
✅ Answer

B


16. Electronegativity is mainly useful in understanding:

A) Bond polarity
B) Nuclear mass
C) Radioactive decay only
D) Atomic mass number
✅ Answer

A) Bond polarity


17. A highly electronegative atom strongly attracts:

A) Shared electron pair
B) Neutrons
C) Protons from nucleus
D) Atomic nuclei only
✅ Answer

A


18. Which is NOT a difference between electronegativity and EGE?

A) Electronegativity is dimensionless
B) EGE is an energy change
C) Electronegativity concerns shared electrons
D) Both have exactly the same definition
✅ Answer

D


19. EGE can be positive or negative depending on:

A) Energy change accompanying electron addition
B) Atomic colour
C) Melting point only
D) Density only
✅ Answer

A


20. Which pair is correctly matched?

A) Electronegativity – kJ mol⁻¹
B) EGE – Pauling scale
C) Electronegativity – attraction for shared electrons
D) EGE – attraction for shared electrons
✅ Answer

C

Q. Define electronegativity and electron gain enthalpy.

Solution:

Electronegativity: The tendency of an atom in a chemical bond to attract the shared electron pair towards itself.

Electron Gain Enthalpy: The enthalpy change when an isolated gaseous atom gains an electron to form a negative ion.

Q. Differentiate between electronegativity and electron gain enthalpy.

Solution:

  • Electronegativity is the tendency to attract shared electrons in a chemical bond.
  • Electron gain enthalpy is the energy change when an isolated gaseous atom gains an electron.
  • Electronegativity is dimensionless, whereas EGE is expressed in kJ mol⁻¹.

Q. Explain the difference between electronegativity and electron gain enthalpy with suitable points.

Solution:

Basis Electronegativity Electron Gain Enthalpy
Meaning Attraction for shared electrons Energy change on gaining electron
Atom Atom in a chemical bond Isolated gaseous atom
Nature Relative property Thermodynamic quantity
Unit Dimensionless kJ mol⁻¹

Q. Define electronegativity. Explain how it differs from electron gain enthalpy.

Solution:

Electronegativity is the tendency of an atom in a molecule to attract the shared pair of electrons towards itself. It is a relative and dimensionless property.

Electron gain enthalpy is the enthalpy change associated with the addition of an electron to an isolated gaseous atom.

Electronegativity
Chemical bond → Shared electrons → Relative attraction

EGE
Isolated gaseous atom → Electron added → Energy change

Thus, although both concepts are related to the tendency of atoms to attract electrons, they are not the same quantity.

Electronegativity describes electron attraction in a bond, whereas EGE describes the energy change on electron addition to an isolated gaseous atom.

Q. Define electronegativity and electron gain enthalpy. Compare their nature, conditions and significance.

1. Electronegativity

Electronegativity is the tendency of an atom in a chemical bond to attract the shared pair of electrons towards itself.

It is a relative and dimensionless quantity. The Pauling scale is commonly used to compare electronegativities of elements.

2. Electron Gain Enthalpy

Electron gain enthalpy is the enthalpy change when an isolated gaseous atom accepts an electron to form a gaseous anion.

X(g) + e⁻ → X⁻(g)

It is an energy-related quantity and is expressed in kJ mol⁻¹. It may be negative when energy is released or positive when energy is absorbed.

3. Major Differences

Point Electronegativity EGE
Definition Attraction for shared electron pair Energy change on electron gain
Condition Atom in chemical bond Isolated gaseous atom
Nature Relative property Thermodynamic quantity
Unit No unit kJ mol⁻¹
Use Helps explain bond polarity Shows energetics of electron addition
Final Conclusion:

Electronegativity and electron gain enthalpy are related but different concepts. Electronegativity is the relative tendency of an atom in a chemical bond to attract shared electrons, while electron gain enthalpy is the actual enthalpy change associated with adding an electron to an isolated gaseous atom.

🎯 Quick Revision

Electronegativity: Attraction for shared electrons
Condition: Atom in chemical bond
Nature: Relative & dimensionless
EGE: Energy change on electron gain
Condition: Isolated gaseous atom
Unit: kJ mol⁻¹