Home
Class 11
CHEMISTRY
How much magnesium sulphide can be obtai...

How much magnesium sulphide can be obtained from `2.00 g` of `Mg` and `2.00 g` of `S` by the reaction.
`Mg + S rarr MgS`. Which is the limiting reagent? Calculate the amount of one of the reactants which remains unreacted?

Text Solution

AI Generated Solution

To solve the problem, we need to follow these steps: ### Step 1: Determine the molar masses of the reactants. - Molar mass of Magnesium (Mg) = 24 g/mol - Molar mass of Sulfur (S) = 32 g/mol ### Step 2: Calculate the number of moles of each reactant. - For Magnesium: ...
Promotional Banner

Topper's Solved these Questions

  • SOME BASIC CONCEPTS AND MOLE CONCEPT

    CENGAGE CHEMISTRY|Exercise Exercises Subjective (Limiting Reagent)|2 Videos
  • SOME BASIC CONCEPTS AND MOLE CONCEPT

    CENGAGE CHEMISTRY|Exercise Exercises Subjective (Empirical And Molecular Formulae)|4 Videos
  • SOME BASIC CONCEPTS AND MOLE CONCEPT

    CENGAGE CHEMISTRY|Exercise Ex 1.2 Fill In The Blanks|1 Videos
  • S-BLOCK GROUP 2 - ALKALINE EARTH METALS

    CENGAGE CHEMISTRY|Exercise Ex 5.1 Objective|2 Videos
  • STATES OF MATTER

    CENGAGE CHEMISTRY|Exercise Exercises (Ture False)|25 Videos

Similar Questions

Explore conceptually related problems

3.0 g of H_(2) react with 29.0 g O_(2) to yield H_(2)O (i) What is the limiting reactant ? (ii) Calculate the maximum amount of water that can be formed (iii) Calculate the amount of one of the reactants which remains unreacted.

1g of Mg is burnt in a vessel containing "0.5g" of \(O_{2}\) .The reactant remaining un-reacted is?

3.0 g of H_(2) react with 30.0 g of O_(2) yield H_(2)O . (i) Which is the limiting reagent? (ii) Calculate the maximum amount of H_(2)O that can be formed. (iii) Calculate the amount of reactant left unreacted.