Concept explainers
Answer the following questions about diethyl ether
- What is the molar mass of diethyl ether?
- Balance the given equation.
- How many moles of diethyl ether are formed from 2 mol of ethanol?
- How many moles of water are formed from 10 mol ethanol?
- How many grams of diethyl ether are formed from 0.55 mol of ethanol?
- How many grams of diethyl ether are formed from 4.60 g of ethanol?
- What is the theoretical yield of diethyl ethr in grams from 2.30 g of ethanol?
- If 1.80 g of diethyl ether are formed in the reaction in part (g), what is the percent yield of diethyl ether?

(a)
Interpretation:
The molar mass of diethyl ether should be predicted.
Concept Introduction:
Molar mass of a substance is sum of atomic masses of all the individual atoms present in it. Mole is the amount of the substance that contains the same number of particles or atoms or molecules.
Answer to Problem 92P
The molar mass of diethyl ether is 74.03 g/mol.
Explanation of Solution
The reaction is given as shown below:
The molecular formula of diethyl ether is given as
The molar mass of diethyl ether is calculated as follows:
Therefore, the molar mass of diethyl ether is

(b)
Interpretation:
The
Concept Introduction:
A balance equation has the equal number of atoms on the left-hand side as well as on the right-hand side.
Answer to Problem 92P
The balanced equation is
Explanation of Solution
The reaction is given as shown below:
In the given reaction, the number of carbon atoms, hydrogen atoms and oxygen atoms are not equal on both sides. To balance the reaction, coefficient 2 is placed before
Therefore, the balanced equation is

(c)
Interpretation:
The moles of diethyl ether formed from 2 mol of ethanol should be predicted.
Concept Introduction:
Molar mass of a substance is sum of atomic masses of all the individual atoms present in it. Mole is the amount of the substance that contains the same number of particles or atoms or molecules.
Answer to Problem 92P
The moles of diethyl ether formed from 2 mol of ethanol are 1.
Explanation of Solution
The balanced reaction is given as shown below:
In the given reaction, 2 moles of diethyl ether are formed by 1 mole of ethanol. Therefore, moles of diethyl ether formed from 2 mol of ethanol are 1.

(d)
Interpretation:
The moles of water needed to react with 10 mol of ethanol should be predicted.
Concept Introduction:
Molar mass of a substance is sum of atomic masses of all the individual atoms present in it. Mole is the amount of the substance that contains the same number of particles or atoms or molecules.
Answer to Problem 92P
The moles of water needed to react with 10 mol of ethanol are 5.
Explanation of Solution
The balanced reaction is given as shown below:
In the given reaction, 2 moles of ethanol give 1 mole of water. Therefore, 10 moles of ethanol give 5 moles of water.
Therefore, the moles of water needed to react with 10 mol of ethanol are 5.

(e)
Interpretation:
The grams of diethyl ether formed from 0.55 mol of ethanol should be predicted.
Concept Introduction:
Molar mass of a substance is sum of atomic masses of all the individual atoms present in it. Mole is the amount of the substance that contains the same number of particles or atoms or molecules.
Answer to Problem 92P
The grams of diethyl ether formed from 0.55 mol of ethanol are
Explanation of Solution
The balanced reaction is given as shown below:
In the given reaction, 2 moles of ethanol give 1 mole of diethyl ether. Therefore, 0.55 mole of ethanol give 0.55/2 = 0.275 mol of diethyl ether.
The grams of diethyl ether are calculated as follows:
Therefore, the grams of diethyl ether formed from 0.55 mol of ethanol are

(f)
Interpretation:
The grams of diethyl ether formed from 4.60 g of ethanol should be predicted.
Concept Introduction:
Molar mass of a substance is sum of atomic masses of all the individual atoms present in it. Mole is the amount of the substance that contains the same number of particles or atoms or molecules.
Answer to Problem 92P
The grams of diethyl ether formed from 4.60 g of ethanol are 3.69 g.
Explanation of Solution
The molar mass and given mass of ethanol is 46.07 g/mol and 4.60 g respectively. The number of moles is calculated as follows:
Substitute given mass and molar mass in the formula.
Therefore, the number of moles of ethanol is 0.0998 mol.
The balanced reaction is given as shown below:
In the given reaction, 2 moles of ethanol give 1 mole of diethyl ether. Therefore, 0.0998 mole of ethanol give 0.0998/2 = 0.0499 moles of diethyl ether.
The grams of ethanol are calculated as follows:
Therefore, the grams of diethyl ether formed from 4.60 g of ethanol are 3.69 g.

(g)
Interpretation:
The theoretical yield of diethyl ether in grams formed from 2.30 g of ethanol should be predicted.
Concept Introduction:
Molar mass of a substance is sum of atomic masses of all the individual atoms present in it. Mole is the amount of the substance that contains the same number of particles or atoms or molecules.
Answer to Problem 92P
The theoretical yield of diethyl ether in grams formed from 2.30 g of ethanol is 1.81 g.
Explanation of Solution
The molar mass and given mass of ethanol is 46.07 g/mol and 2.30 g respectively. The number of moles is calculated as follows:
Substitute given mass and molar mass in the formula.
Therefore, the number of moles of ethanol is 0.049 mol.
The balanced reaction is given as shown below:
In the given reaction, 2 moles of ethanol give 1 mole of diethyl ether. Therefore, 0.049 mole of ethanol give 0.049/2 = 0.0245 moles of diethyl ether.
The grams of ethanol are calculated as follows:
Therefore, the theoretical yield of diethyl ether in grams formed from 2.30 g of ethanol is 1.81 g.

(h)
Interpretation:
The percent yield of ethanol if 1.80 g of diethyl ether formed in part (g) should be predicted.
Concept Introduction:
The amount that is predicted by the calculation of stoichiometry of the reaction is known as theoretical yield. The amount that is produced by a product in a reaction is known as the actual yield. The ratio of actual yield to the theoretical yield is called percentage yield of a reaction.
Answer to Problem 92P
The percent yield of ethanol if 1.80 g of diethyl ether formed in part (g) is 100.5%.
Explanation of Solution
The theoretical yield and actual yield of diethyl ether is 1.81 g and 1.80 g respectively.
The percentage yield for the reaction is calculated as follows:
Substitute observed and theoretical yield in the above formula.
Therefore, the percent yield of ethanol if 1.80 g of diethyl ether formed in part (g) is 100.5%.
Want to see more full solutions like this?
Chapter 5 Solutions
GENERAL,ORGANIC, & BIOLOGICAL CHEM-ACCES
Additional Science Textbook Solutions
HUMAN ANATOMY
Biological Science (6th Edition)
Concepts of Genetics (12th Edition)
Genetics: From Genes to Genomes
Organic Chemistry
Chemistry: Structure and Properties (2nd Edition)
- 18 Question (1 point) Draw the line structure form of the given partially condensed structure in the box provided. :ÖH HC HC H2 ΙΩ Н2 CH2 CH3 CH3 partially condensed formarrow_forwardsomeone else has already submitted the same question on here and it was the incorrect answer.arrow_forwardThe reaction: 2NO2(g) ⇌ N2O4(g) is an exothermic reaction, ΔH=-58.0 kJ/molrxn at 0°C the KP is 58.If the initial partial pressures of both NO2(g) and N2O4(g) are 2.00 atm:A) Is the reaction at equilibrium? If not, what is the value of Q? B) Which direction will the reaction go to reach equilibrium? C) Use an ICE table to find the equilibrium pressures.arrow_forward
- The dissociation of the weak acid, nitrous acid, HNO2, takes place according to the reaction: HNO2 (aq) ⇌ H+(aq) + NO2–(aq) K=7.2 X 10-4 When 1.00 mole of HNO2 is added to 1.00 L of water, the H+ concentration at equilibrium is 0.0265 M.A) Calculate the value of Q if 1.00 L of water is added? B) How will reaction shift if 1.00 L of water is added?arrow_forwardSuppose a certain copolymer elastomeric material “styrene-butadiene rubber”) contains styrene ("S") monomers –(C8H8)– and butadiene ("B") monomers –(C4H6)– and that their numerical ratio S:B = 1:8. What is the mass ratio mS:mB of the two monomers in the material? What is the molecular mass M of a macromolecule of this copolymer with degree of polymerization n = 60,000? Data: AC = 12.01 u, AH = 1.008 u.arrow_forwardLab Questions from Lab: Gravimetric Determination of Calcium as CaC2O4•H2O What is the purpose of the methyl red indicator? Why does a color change to yellow tell you that the reaction is complete? Why is the precipitate rinsed with ice-cold water in step 4? Why not room temperature or hot water? Why is it important that the funnels be placed in a desiccator before weighing (steps 1 and 5)?arrow_forward
- What mass of ethylene glycol, HOCH2CH2OH, Mustbe added to 5.50 kg of water to antifreeze that would work for the car radiator to -10.0 degrees celcius? MM (g/mol): 62.07arrow_forwardWhat is the molarity of a 0.393 m glucose solution if its density is 1.16 g/mL? MM glucose 180.2 g/molarrow_forwardThe rate constant for the decay of a radioactive element is 2.28 × 10⁻³ day⁻¹. What is the half-life of this element in days?arrow_forward
- Handwritten pleasearrow_forwardChoose the best reagents to complete the following reaction. i H A B 1. CH3CH2Na 2. H3O+ 1. CH3CH2MgBr 2. H3O+ 1. CH3MgBr Q C 2. H3O+ 1. H3O+ D 2. CH3MgBr 00 OH Q E CH³MgBrarrow_forwardThe kinetics of a gas phase reaction of the form A → Products results in a rate constant of 0.00781 M/min. For this reaction, the initial concentration of A is 0.501 M. What is the half-life for this reaction?arrow_forward
- Chemistry for Engineering StudentsChemistryISBN:9781337398909Author:Lawrence S. Brown, Tom HolmePublisher:Cengage LearningChemistry: Principles and PracticeChemistryISBN:9780534420123Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward MercerPublisher:Cengage LearningChemistry & Chemical ReactivityChemistryISBN:9781133949640Author:John C. Kotz, Paul M. Treichel, John Townsend, David TreichelPublisher:Cengage Learning
- Introductory Chemistry: A FoundationChemistryISBN:9781285199030Author:Steven S. Zumdahl, Donald J. DeCostePublisher:Cengage LearningChemistry & Chemical ReactivityChemistryISBN:9781337399074Author:John C. Kotz, Paul M. Treichel, John Townsend, David TreichelPublisher:Cengage LearningChemistry: The Molecular ScienceChemistryISBN:9781285199047Author:John W. Moore, Conrad L. StanitskiPublisher:Cengage Learning





