Question

Determine the mass of bromoform isolated from the reaction of 1.2g of 4-hydroxy-2-hexanone with excess Br2...

Determine the mass of bromoform isolated from the reaction of 1.2g of 4-hydroxy-2-hexanone with excess Br2 in KOH solution. The reaction proceeds in 92% yield. Please show all the calculation steps. Thank you!

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

bromoform reaction

116 g of 4-hydroxy-2-hexanone will produce 252 g of bromoform

then 1.2 g of 4-hydroxy-2-hexanone will produce how many gram of bromoform

116 g = 252 g

1.2 g = y grand

cross multiply

y = 252 g x 1.2 g / 116 g = 2.60 grams

therefore 100 % yield = 2.60 grams of bromoform

then 92 % will have how many grams of bromoform

100 % = 2.6 g

92 % = z grams

cross multiply

z = 92 % × 2.6 g / 100 % = 2.392 g

therefore 92 % of yield will have 2.392 g of bromoform

Add a comment
Know the answer?
Add Answer to:
Determine the mass of bromoform isolated from the reaction of 1.2g of 4-hydroxy-2-hexanone with excess Br2...
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
  • please write out 4 In the following chemical reaction. Balance the molecular equation by adding coefficient....

    please write out 4 In the following chemical reaction. Balance the molecular equation by adding coefficient. Write the net ionic equation by adding phases. Do not write ionic Eq (4 pts) Molecular Eq.: Al(OH), (aq) + HNO, (aq) + - Al(NO) (aq) + HO (1) Net ionic Eq. 5 Determine the oxidation number of the element in the following ions or compounds (1 pt each) a) CIO; CI - b) SO, S = c) PbO Pb- 6 Determine if the...

  • What mass of CO2 will be produced from the reaction of 10.0 g of C6H6 with...

    What mass of CO2 will be produced from the reaction of 10.0 g of C6H6 with excess O2? C6H6 + 15/2 O2 --> 6CO2 + 3H2O Please show work! Thank you!!!

  • can you please answer all of the parts d slf Section B: Show all your calculation...

    can you please answer all of the parts d slf Section B: Show all your calculation steps with conversion factors formula of reactants and products, setup with units, calculator value and correct significant figures. Calculation of molar mass should be shown when needed. All atomic mass of elements are up to two decimals as given in the periodic table. Following Reaction is given when zinc reacts with sulfur to form ZnS. 1 Zn (s)+ S(s) ZnS Determine the limiting reactant...

  • Name (First and Last): Stoichiometry and Mass Relationships Report Pages Obtain values from the pictures found...

    Name (First and Last): Stoichiometry and Mass Relationships Report Pages Obtain values from the pictures found in the procedure to complete the data table below A. Data: 65.62 + Mass beaker + NaCO3 + 66.62g 65.62g 2 Mass empty beaker 3 Mass Na:COs used 19. 4 Mass graduated cylinder + HCl(aq) 5 Mass empty graduated cylinder 12.689 4.41 g 8. 279 1 74.899 Mass HCl(aq) used 65.629 19 8.27 Total mass before rxn: beaker + Nazco, + HCl(aq) 65.623 8...

  • Section : Show all your calculation steps with conversion factors formula of with units, calculator value...

    Section : Show all your calculation steps with conversion factors formula of with units, calculator value and correct significant figures. Calculation of m shown when needed. All atomie mass of elements are up to two decimas table. products, ax sho e given in the periode 1 Following Reaction is given when zine reacts with sulfur to form Zus Zn (s) + S(s) ZnS Determine the limiting reactant when 12.72 g of Zin react with 10.90 g of sulfur(s) to produce...

  • 4. Consider the reaction: 2 NO(g) + Br2 (g) 2 NOB (g) Kp = 31.8 at...

    4. Consider the reaction: 2 NO(g) + Br2 (g) 2 NOB (g) Kp = 31.8 at 302 K a) If the initial partial pressures are Pro = 108 torr, Per; = 126 torr, ProBr = 275 torr, find Qp and determine which direction the reaction proceeds in to reach equilibrium. 139.17 b) When a mixture of NO, Bra, and H, reaches equilibrium at 302 K, Pno=133 torr and Pers 151 torr. Find PNobr (in torr). [335 torr] 5. lodine gas...

  • Consider the recombination reaction: 2 Br(g) Br2 (8) The mechanism involves two elementary steps. The first...

    Consider the recombination reaction: 2 Br(g) Br2 (8) The mechanism involves two elementary steps. The first step results in formation of an energized Bra molecule, the excess energy carried by Bris then transferred to a molecule M for subsequent formation of Bry in the second step First step: 2 Br (8) Bry* () + M ) Brz* () Brz () +M() Second step: By the steady-state approximation and work out an expression for d[Brydr in term of k, k., ky...

  • 2) Determine your percent yield of sodium chloride in reaction A. Show your work for each...

    2) Determine your percent yield of sodium chloride in reaction A. Show your work for each step. Write the balanced equation for reaction A - the reaction between sodium bicarbonate and hydrochloric acid. Using mass-to-mass stoichiometry, calculate the theoretical yield of NaCl for reaction A. Use your initial mass of sodium bicarbonate reactant as a starting point, along with the relevant mole-to-mole ratio from the balanced equation to perform this calculation. . Calculate your percent yield of sodium chloride product....

  • First determine the actual yield, moles of Sr3(PO4)2 formed. From the actual yield, theoretical moles of...

    First determine the actual yield, moles of Sr3(PO4)2 formed. From the actual yield, theoretical moles of limiting reactant in sample: a) Theoretical mass of limiting reactant b) Mass percent of limiting reactant in sample From the actual yield, mass of excess reactant sample, what is the mass percent of excess in sample? Beaker Sample II Unknown mixture NaPO412H2O * SrCl2* 6H2O Mass of mixture and container 113.4904g Mass of container 111.5575g Mass of mixture added to Beaker II 1.9329g Formula...

  • calculate the stoichiometry, limiting reagent, and theoretical yield of a reaction between 100uL of 2-butanol and...

    calculate the stoichiometry, limiting reagent, and theoretical yield of a reaction between 100uL of 2-butanol and 50uL of concentrated sulfuric acid when heat is added. the products of the reaction are 1-butene, cis-2-butene, and trans-2-butene. All three of these products can be treated as one for these calculations, it is not necessary to find out how much of each one specifically there is, just the total amount of the three combined. please express answer of theoretical yield in mmol. Please...

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