Effective Nuclear Charge given Mulliken's Electronegativity Formula

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The Effective Nuclear Charge is the net positive charge experienced by an electron in a polyelectronic atom. Check FAQs
Z=((0.336XM)-0.2-0.744)(rcovalent2)0.359
Z - Effective Nuclear Charge?XM - Mulliken's Electronegativity?rcovalent - Covalent Radius?

Effective Nuclear Charge given Mulliken's Electronegativity Example

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Here is how the Effective Nuclear Charge given Mulliken's Electronegativity equation looks like with Values.

Here is how the Effective Nuclear Charge given Mulliken's Electronegativity equation looks like with Units.

Here is how the Effective Nuclear Charge given Mulliken's Electronegativity equation looks like.

25.0089Edit=((0.33622Edit)-0.2-0.744)(1.18Edit2)0.359
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Effective Nuclear Charge given Mulliken's Electronegativity Solution

Follow our step by step solution on how to calculate Effective Nuclear Charge given Mulliken's Electronegativity?

FIRST Step Consider the formula
Z=((0.336XM)-0.2-0.744)(rcovalent2)0.359
Next Step Substitute values of Variables
Z=((0.33622J)-0.2-0.744)(1.18A2)0.359
Next Step Prepare to Evaluate
Z=((0.33622)-0.2-0.744)(1.182)0.359
Next Step Evaluate
Z=25.0089002785515
LAST Step Rounding Answer
Z=25.0089

Effective Nuclear Charge given Mulliken's Electronegativity Formula Elements

Variables
Effective Nuclear Charge
The Effective Nuclear Charge is the net positive charge experienced by an electron in a polyelectronic atom.
Symbol: Z
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Mulliken's Electronegativity
The Mulliken's Electronegativity proposed that the arithmetic mean of the first ionization energy and the electron affinity should be a measure of the tendency of an atom to attract electrons.
Symbol: XM
Measurement: EnergyUnit: J
Note: Value can be positive or negative.
Covalent Radius
The Covalent Radius is a measure of the size of an atom that forms part of one covalent bond.
Symbol: rcovalent
Measurement: LengthUnit: A
Note: Value can be positive or negative.

Other formulas in Mulliken's Electronegativity category

​Go Mulliken's Electronegativity of Element
XM=0.5(IE+E.A)
​Go Mulliken's Electronegativity from Pauling's Electronegativity
XM=XP+0.20.336
​Go Mulliken's Electronegativity from Allred Rochow's Electronegativity
XM=XA.R+0.744+0.20.336
​Go Covalent Radius given Mulliken's Electronegativity
rcovalent=0.359Z(0.336XM)-0.2-0.744

How to Evaluate Effective Nuclear Charge given Mulliken's Electronegativity?

Effective Nuclear Charge given Mulliken's Electronegativity evaluator uses Effective Nuclear Charge = (((0.336*Mulliken's Electronegativity)-0.2-0.744)*(Covalent Radius^2))/0.359 to evaluate the Effective Nuclear Charge, The Effective Nuclear Charge given Mulliken's Electronegativity is the net positive charge experienced by an electron in a polyelectronic atom. Effective Nuclear Charge is denoted by Z symbol.

How to evaluate Effective Nuclear Charge given Mulliken's Electronegativity using this online evaluator? To use this online evaluator for Effective Nuclear Charge given Mulliken's Electronegativity, enter Mulliken's Electronegativity (XM) & Covalent Radius (rcovalent) and hit the calculate button.

FAQs on Effective Nuclear Charge given Mulliken's Electronegativity

What is the formula to find Effective Nuclear Charge given Mulliken's Electronegativity?
The formula of Effective Nuclear Charge given Mulliken's Electronegativity is expressed as Effective Nuclear Charge = (((0.336*Mulliken's Electronegativity)-0.2-0.744)*(Covalent Radius^2))/0.359. Here is an example- 25.0089 = (((0.336*22)-0.2-0.744)*(1.18E-10^2))/0.359.
How to calculate Effective Nuclear Charge given Mulliken's Electronegativity?
With Mulliken's Electronegativity (XM) & Covalent Radius (rcovalent) we can find Effective Nuclear Charge given Mulliken's Electronegativity using the formula - Effective Nuclear Charge = (((0.336*Mulliken's Electronegativity)-0.2-0.744)*(Covalent Radius^2))/0.359.
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