Determination of Equivalent Mass of Metal using Chloride Formation Method Solution

STEP 0: Pre-Calculation Summary
Formula Used
Equivalent Mass of Metal = (Mass of Metal/Mass of Chlorine reacted)*Equivalent Mass of Chlorine
E.MMetal = (W/Mreacted)*E.MCl
This formula uses 4 Variables
Variables Used
Equivalent Mass of Metal - (Measured in Kilogram) - Equivalent Mass of Metal is the no. of parts by mass of element which can displace/combine with 1.008 parts by mass of hydrogen or 8 parts by mass of oxygen or 35.5 parts by mass of chlorine.
Mass of Metal - (Measured in Kilogram) - Mass of Metal is the amount of metal which displaces 11200 ml of hydrogen at NTP.
Mass of Chlorine reacted - (Measured in Kilogram) - Mass of Chlorine reacted is defined as the amount of Cl that a certain amount of metal reacts with to form it's metal chloride.
Equivalent Mass of Chlorine - (Measured in Kilogram) - Equivalent Mass of Chlorine is given by, Atomic Weight of Chlorine divided by Valency of Chlorine. As, valency of Chlorine is 1, equivalent mass of Chlorine is same as it's atomic weight = 35.5 g.
STEP 1: Convert Input(s) to Base Unit
Mass of Metal: 0.033 Gram --> 3.3E-05 Kilogram (Check conversion ​here)
Mass of Chlorine reacted: 0.378 Gram --> 0.000378 Kilogram (Check conversion ​here)
Equivalent Mass of Chlorine: 35.5 Gram --> 0.0355 Kilogram (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
E.MMetal = (W/Mreacted)*E.MCl --> (3.3E-05/0.000378)*0.0355
Evaluating ... ...
E.MMetal = 0.00309920634920635
STEP 3: Convert Result to Output's Unit
0.00309920634920635 Kilogram -->3.09920634920635 Gram (Check conversion ​here)
FINAL ANSWER
3.09920634920635 3.099206 Gram <-- Equivalent Mass of Metal
(Calculation completed in 00.020 seconds)

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Determination of Equivalent Mass of Metal using Chloride Formation Method Formula

​LaTeX ​Go
Equivalent Mass of Metal = (Mass of Metal/Mass of Chlorine reacted)*Equivalent Mass of Chlorine
E.MMetal = (W/Mreacted)*E.MCl

What is Equivalent Mass?

The mass of a particular substance that can combine with or displace 1 gram of hydrogen or 8 grams of oxygen or 35.5 grams of chlorine, used in expressing combining powers, especially of elements is called the equivalent mass.
For acid–base reactions, the equivalent weight of an acid or base is the mass which supplies or reacts with one mole of hydrogen cations (H+).
For redox reactions, the equivalent weight of each reactant supplies or reacts with one mole of electrons (e−) in a redox reaction.
Equivalent weight has the units of mass, unlike atomic weight, which is now used as a synonym for relative atomic mass and is dimensionless. Equivalent weights were originally determined by experiment, but (so far as they are still used) are now derived from molar masses. The equivalent weight of a compound can also be calculated by dividing the molecular mass by the number of positive or negative electrical charges that result from the dissolution of the compound.

How to Calculate Determination of Equivalent Mass of Metal using Chloride Formation Method?

Determination of Equivalent Mass of Metal using Chloride Formation Method calculator uses Equivalent Mass of Metal = (Mass of Metal/Mass of Chlorine reacted)*Equivalent Mass of Chlorine to calculate the Equivalent Mass of Metal, The Determination of Equivalent Mass of Metal using Chloride Formation Method formula is defined as the mass of an element that reacts with 35.5 g of Chlorine to form it's chloride. Equivalent Mass of Metal is denoted by E.MMetal symbol.

How to calculate Determination of Equivalent Mass of Metal using Chloride Formation Method using this online calculator? To use this online calculator for Determination of Equivalent Mass of Metal using Chloride Formation Method, enter Mass of Metal (W), Mass of Chlorine reacted (Mreacted) & Equivalent Mass of Chlorine (E.MCl) and hit the calculate button. Here is how the Determination of Equivalent Mass of Metal using Chloride Formation Method calculation can be explained with given input values -> 349.7015 = (3.3E-05/0.000378)*0.0355.

FAQ

What is Determination of Equivalent Mass of Metal using Chloride Formation Method?
The Determination of Equivalent Mass of Metal using Chloride Formation Method formula is defined as the mass of an element that reacts with 35.5 g of Chlorine to form it's chloride and is represented as E.MMetal = (W/Mreacted)*E.MCl or Equivalent Mass of Metal = (Mass of Metal/Mass of Chlorine reacted)*Equivalent Mass of Chlorine. Mass of Metal is the amount of metal which displaces 11200 ml of hydrogen at NTP, Mass of Chlorine reacted is defined as the amount of Cl that a certain amount of metal reacts with to form it's metal chloride & Equivalent Mass of Chlorine is given by, Atomic Weight of Chlorine divided by Valency of Chlorine. As, valency of Chlorine is 1, equivalent mass of Chlorine is same as it's atomic weight = 35.5 g.
How to calculate Determination of Equivalent Mass of Metal using Chloride Formation Method?
The Determination of Equivalent Mass of Metal using Chloride Formation Method formula is defined as the mass of an element that reacts with 35.5 g of Chlorine to form it's chloride is calculated using Equivalent Mass of Metal = (Mass of Metal/Mass of Chlorine reacted)*Equivalent Mass of Chlorine. To calculate Determination of Equivalent Mass of Metal using Chloride Formation Method, you need Mass of Metal (W), Mass of Chlorine reacted (Mreacted) & Equivalent Mass of Chlorine (E.MCl). With our tool, you need to enter the respective value for Mass of Metal, Mass of Chlorine reacted & Equivalent Mass of Chlorine and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Equivalent Mass of Metal?
In this formula, Equivalent Mass of Metal uses Mass of Metal, Mass of Chlorine reacted & Equivalent Mass of Chlorine. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Equivalent Mass of Metal = (Mass of Metal/Mass of Hydrogen Displaced)*Equivalent Mass of Hydrogen
  • Equivalent Mass of Metal = (Mass of Metal/Vol. of hydrogen displaced at STP)*Vol. of Hydrogen displaced at NTP
  • Equivalent Mass of Metal = (Mass of Metal/Mass of Oxygen displaced)*Equivalent Mass of Oxygen
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