Ionization energy given electronegativity Solution

STEP 0: Pre-Calculation Summary
Formula Used
Ionization Energy = (Electronegativity*5.6)-Electron Affinity
IE = (EN*5.6)-E.A
This formula uses 3 Variables
Variables Used
Ionization Energy - (Measured in Joule) - The Ionization Energy is the minimum amount of energy required to remove the most loosely bound electron of an isolated neutral gaseous atom or molecule.
Electronegativity - (Measured in Joule) - Electronegativity is the measurement of the tendency of an atom to attract a shared pair of electrons (or electron density).
Electron Affinity - (Measured in Joule) - The Electron Affinity is defined as the amount of energy released when an electron is attached to a neutral atom or molecule in the gaseous state to form a negative ion.
STEP 1: Convert Input(s) to Base Unit
Electronegativity: 98 Joule --> 98 Joule No Conversion Required
Electron Affinity: 17.1 Joule --> 17.1 Joule No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
IE = (EN*5.6)-E.A --> (98*5.6)-17.1
Evaluating ... ...
IE = 531.7
STEP 3: Convert Result to Output's Unit
531.7 Joule --> No Conversion Required
FINAL ANSWER
531.7 Joule <-- Ionization Energy
(Calculation completed in 00.020 seconds)

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Created by Akshada Kulkarni
National Institute of Information Technology (NIIT), Neemrana
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K J Somaiya College of science (K J Somaiya), Mumbai
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Ionization energy given electronegativity Formula

​LaTeX ​Go
Ionization Energy = (Electronegativity*5.6)-Electron Affinity
IE = (EN*5.6)-E.A

Hoe does electronegativity differ from electron affinity?

Electronegativity is defined as a chemical property which decides the propensity of an atom to attract an electron. In the year 1932, Linus Pauling proposed the concept of electronegativity. Electron affinity is defined as the amount of energy liberated when a molecule or neutral atom acquires an electron from outside. This property is a fixed and measurable value.

How to Calculate Ionization energy given electronegativity?

Ionization energy given electronegativity calculator uses Ionization Energy = (Electronegativity*5.6)-Electron Affinity to calculate the Ionization Energy, The Ionization energy given electronegativity formula is defined as the minimum amount of energy required to remove the most loosely bound electron of an isolated neutral gaseous atom or molecule. Ionization Energy is denoted by IE symbol.

How to calculate Ionization energy given electronegativity using this online calculator? To use this online calculator for Ionization energy given electronegativity, enter Electronegativity (EN) & Electron Affinity (E.A) and hit the calculate button. Here is how the Ionization energy given electronegativity calculation can be explained with given input values -> 531.7 = (98*5.6)-17.1.

FAQ

What is Ionization energy given electronegativity?
The Ionization energy given electronegativity formula is defined as the minimum amount of energy required to remove the most loosely bound electron of an isolated neutral gaseous atom or molecule and is represented as IE = (EN*5.6)-E.A or Ionization Energy = (Electronegativity*5.6)-Electron Affinity. Electronegativity is the measurement of the tendency of an atom to attract a shared pair of electrons (or electron density) & The Electron Affinity is defined as the amount of energy released when an electron is attached to a neutral atom or molecule in the gaseous state to form a negative ion.
How to calculate Ionization energy given electronegativity?
The Ionization energy given electronegativity formula is defined as the minimum amount of energy required to remove the most loosely bound electron of an isolated neutral gaseous atom or molecule is calculated using Ionization Energy = (Electronegativity*5.6)-Electron Affinity. To calculate Ionization energy given electronegativity, you need Electronegativity (EN) & Electron Affinity (E.A). With our tool, you need to enter the respective value for Electronegativity & Electron Affinity and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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