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Interpretation:
The molar concentration of
Concept Introduction:
Titration is a widely used method for the determination of unknown concentration of an analyte. In order to determine the unknown concentration, the analyte of known volume is titrated with the titrant of known volume and concentration. The unknown concentration of the analyte is found by the following equation.
Where,
This formula is applicable when one mole of analyte is reacting with one mole of the titrant.
After calculating the unknown concentration of the analyte, its weight is gram is calculated
Mole is the mass of the substance that is having Avogadro number of particles. The number of moles of a given substance can be calculated by multiplying its volume with concentration
Molar concentration or molarity is the ratio of number of moles of solute to the volume of the solution in litre.
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Chapter 19 Solutions
EBK GENERAL CHEMISTRY: THE ESSENTIAL CO
- Calculate the reaction quotient for the reaction:NaOH (s) ⇌ Na+ (aq)+ OH- (aq) + 44.4 kJ [Na+] = 4.22 M [OH-] = 6.41 Marrow_forwardGiven the following concentrations for a system, calculate the value for the reaction quotient: Cl2(g)+ CS2(g) ⇌ CCl4(g)+ S2Cl2(g) Cl2 = 31.1 atm CS2 = 91.2 atm CCl4 = 2.12 atm S2Cl2 = 10.4 atmarrow_forwardMatch each chemical or item with the proper disposal or cleanup mwthod, Not all disposal and cleanup methods will be labeled. Metal sheets C, calcium, choroide solutions part A, damp metal pieces Part B, volumetric flask part A. a.Return to correct lables”drying out breaker. Place used items in the drawer.: Rinse with deionized water, dry as best you can, return to instructor. Return used material to the instructor.: Pour down the sink with planty of running water.: f.Pour into aqueous waste container. g.Places used items in garbage.arrow_forward
- Write the equilibrium constant expression for the following reaction: HNO2(aq) + H2O(l) ⇌ H3O+(aq) + NO2-(aq)arrow_forwardWrite the reaction quotient for: Pb2+(aq) + 2 Cl- (aq) ⇌ PbCl2(s)arrow_forwardWrite the equilibrium constant expression for the following system at equilibrium: I2 (g) ⇌ 2 I (g)arrow_forward
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