Question

A KMnO4 solution is standardized by a metallic iron primary standard. To do so, the metallic...

A KMnO4 solution is standardized by a metallic iron primary standard. To do so, the metallic iron is dissolved in acid, reduced into Fe2+ and titrated by permanganate. If 33.00 mL of KMnO4 are required to titrate 0.5585 g of iron, what is the concentration of the permanganate solution?

1 0
Add a comment Improve this question Transcribed image text
Answer #1

The reaction is given as :

MnO4- + 8H+ + 5Fe2+ = Mn2+ + 4H2O + 5Fe3+

Number of moles of iron = 0.5585 / 55.85 = 0.01 mol

So number of moles of manganate required = 0.01 / 5 = 0.002 mol

Molarity = 0.002 / 0.033

= 0.06 M

So the concentartion of permanganate solution will be 0.06 M

Add a comment
Know the answer?
Add Answer to:
A KMnO4 solution is standardized by a metallic iron primary standard. To do so, the metallic...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • The iron content of iron ore can be determined by titration with a standard KMnO4 solution....

    The iron content of iron ore can be determined by titration with a standard KMnO4 solution. The iron ore is dissolved in HCl, and all the iron is reduced to Fe2+ ions. This solution is then titrated with KMnO4 solution, producing Fe3+ and Mn2+ ions in acidic solution. If it required 29.83 mL of 0.0447 M KMnO4 to titrate a solution made from 1.128 g of iron ore, what is the mass percent of iron in the iron ore? Mass...

  • The Fe2+ (55.845 g/mol) content of a 2.264 g steel sample dissolved in 50.00 mL of...

    The Fe2+ (55.845 g/mol) content of a 2.264 g steel sample dissolved in 50.00 mL of an acidic solution was determined by tiration with a standardized 0.120 M potassium permanganate (KMnO4, 158.034 g/mol) solution. The titration required 44.82 mL to reach the end point. What is the concentration of iron in the steel sample? Express your answer as grams of Fe per gram of steel Mn2+5 Fe34 H20 + 5 Fe2+ MnO8 H concentration g Fe/g steel A 1.969 g...

  • The Fe2+ (55.845 g/mol) content of a 2.370 g steel sample dissolved in 50.00 mL was...

    The Fe2+ (55.845 g/mol) content of a 2.370 g steel sample dissolved in 50.00 mL was determined by tiration with a standardized 0.120 M potassium permanganate (KMnO4, 158.034 g/mol) solution. The titration required 39.51 mL to reach the end point. What is the concentration of iron in the steel sample? Express your answer as grams of Fe per grams of steel (g Fe2+1 g steel). Mno, +8H+ + 5Fe2+ = Mn2+ + 5Fe'+ + 4H,0 Number g Fe2+1 g steel

  • A volume of 70.0 mL of aqueous potassium hydroxide (KOH) was titrated against a standard solution...

    A volume of 70.0 mL of aqueous potassium hydroxide (KOH) was titrated against a standard solution of sulfuric acid (H2SO4). What was the molarity of the KOH solution if 15.2 mL of 1.50 M H2SO4 was needed? The equation is 2KOH(aq)+H2SO4(aq)?K2SO4(aq)+2H2O(l) part b: Redox titrations are used to determine the amounts of oxidizing and reducing agents in solution. For example, a solution of hydrogen peroxide, H2O2, can be titrated against a solution of potassium permanganate, KMnO4. The following equation represents...

  • I did a redox titration. I need help calculating the concentration of my KMnO4 solution. So i fir...

    I did a redox titration. I need help calculating the concentration of my KMnO4 solution. So i first measured .2125 g of Na2C2O4 and put it into a flask. Next I transferred 250 ml of 1 M H2SO4 solution into the flask and dissolved the salt. I then titrated it with KMnO4 with 27.2 ml of KMnO4 solution. What is the concentration of my KMnO4 solution? Please show all the work.

  • You have standardized your KMnO4- solution and the molarity is 0.03251M. You used 17.98ml to reach...

    You have standardized your KMnO4- solution and the molarity is 0.03251M. You used 17.98ml to reach equivalence point with your iron unknown. You started with 1.112g of unknown. What is the %Fe2+ in your unknown? (Fe2+ atomic weight=55.847 g/mol, KMnO4- formula weight= 158.03g/mol) You have standardized your KMnO4-solution and the molarity is 0.03251M. You used 17.98ml to reach equivalence point with your iron unknown. You started with 1.112 g of unknown. What is the %Fe?+ in your unknown? (Fe2+ atomic...

  • Spring 2019 CSUSM CHEM 175 8. Which statements are true? Select ALL. that apply. a) Dissolution of ammonium nitrate is an endothermic reactio b) Hydrogen gas evolves when calcium carbonate reacts...

    Spring 2019 CSUSM CHEM 175 8. Which statements are true? Select ALL. that apply. a) Dissolution of ammonium nitrate is an endothermic reactio b) Hydrogen gas evolves when calcium carbonate reacts with hydrochloric acid. c) The acid-base neutralization reaction is exothermic. ) The value of enthalpy change, AH, of calcium chloride dissolution is positive. sample contains an unknown amount of Fe?'which is titrated with a KMnO, solution in acidie tions to determine the iron composition by mass. A standardized KMnOs...

  • A sample of iron ore weighing 0.6428g is dissolved in acid, the iron is reduced to...

    A sample of iron ore weighing 0.6428g is dissolved in acid, the iron is reduced to Fe2+, and the solution is titrated with 36.30 mL of 0.01753 M K2Cr2O7 solution. The reaction is 6Fe2+ + Cr2O72- +14H+ à 6Fe3+ + 2Cr3+ + 7H2O What is the Percentage of iron (55.85g/mol) in the sample?

  • The concentration of hydrogen peroxide solution can be determined by titration against a standardized solution or...

    The concentration of hydrogen peroxide solution can be determined by titration against a standardized solution or potassium permanganate in acidic medium according to the following equation: 2MnO4 + 5H2O2 + 6H* -----> 502 + 2Mn+2 + 8H2O What is being oxidized? What is being reduced? What is the oxidizing agent? What is the reducing agent? If 36.44 mL of a 0.01652 M KMnO4 solution are required to oxidize 25.00 mL of a H2O2 solution, calculate the molarity of the H2O2...

  • The Fe2+ (55.84555.845 g/mol) content of a 2.028g steel sample dissolved in 50.00mL of an acidic solution was determined...

    The Fe2+ (55.84555.845 g/mol) content of a 2.028g steel sample dissolved in 50.00mL of an acidic solution was determined by tiration with a standardized 0.130 M potassium permanganate (KMnO4KMnO4, 158.034 g/mol) solution. The titration required 36.61 mL to reach the end point. What is the concentration of iron in the steel sample? Express your answer as grams of Fe per gram of steel. MnO−4+8H++5Fe2+↽−−⇀Mn2++5Fe3++ concentration: ______________ g Fe/g steel

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT