Concept explainers
(a)
Interpretation:
Calculate the volume of hydrogen with pressure 155 atm that run an electric motor for 3 h and volume of air with 20%oxygen needed to run the electric motor per minute.
Concept introduction:
Hydrogen-Oxygen fuel cell works on the principle of oxidation of hydrogen and reduction of oxygen, it was made up of potassium hydroxide as an electrolyte solution and two inert electrodes. Hydrogen and oxygen gases were bubbled through the anode and cathode compartments. The cell reaction of hydrogen-oxygen fuel cell was shown below.
Calculation of the volume of hydrogen gas used for generating of electricity involves multistep
1) Calculation of total number of charges that flow through the circuit, since coulomb is the amount of electric charge flowing in a circuit in 1s, when current is 1A. So the above statement can represented by the following equation.
On dividing the number of charges with Faraday constant we can attain the number of moles of electron
From knowing the number of mole of electrons and using the stoichiometry of the reaction, the number of moles of the substance reduced or oxidized can be determined. This can be explained by the representative reaction as shown below.
2 mole of hydrogen releases 4 mole of electron, so the number of moles of hydrogen oxidized can calculated by the following equation.
Finally on substituting the number of moles of the product into the ideal gas equation the volume of the gas needed for the cell reaction can be achieved.
P = Pressure of the gas
V = Volume of the gas
R = Universal gas constant
T = Temperature in kelvin
n = Number of moles of the gas
(a)

Answer to Problem 19.37QP
For the anode reaction
Number of charges passing through the circuit can be calculated using the formula
Current = 8.5A
Time = 3 h or 10800s
So
Volume of hydrogen can calculated from ideal gas equation
Explanation of Solution
For the anode reaction
Number of charges passing through the circuit can be calculated using the formula
Current = 8.5A
Time = 3 h or 10800s
So
On dividing the number of charges by faraday constant number of moles of electrons passing the circuit can be calculated as shown below
Volume of hydrogen can calculated from ideal gas equation
The volume of hydrogen with pressure 155atm, needed to run a motor of 8.5A for 3 hrs was calculated to be 0.075L.
(b)
Interpretation:
Calculate the volume of hydrogen with pressure 155 atm that run an electric motor for 3 h and volume of air with 20%oxygen needed to run the electric motor per minute.
Concept introduction:
Hydrogen-Oxygen fuel cell works on the principle of oxidation of hydrogen and reduction of oxygen, it was made up of potassium hydroxide as an electrolyte solution and two inert electrodes. Hydrogen and oxygen gases were bubbled through the anode and cathode compartments. The cell reaction of hydrogen-oxygen fuel cell was shown below.
Calculation of the volume of hydrogen gas used for generating of electricity involves multistep
1) Calculation of total number of charges that flow through the circuit, since coulomb is the amount of electric charge flowing in a circuit in 1s, when current is 1A. So the above statement can represented by the following equation.
On dividing the number of charges with Faraday constant we can attain the number of moles of electron
From knowing the number of mole of electrons and using the stoichiometry of the reaction, the number of moles of the substance reduced or oxidized can be determined. This can be explained by the representative reaction as shown below.
2 mole of hydrogen releases 4 mole of electron, so the number of moles of hydrogen oxidized can calculated by the following equation.
Finally on substituting the number of moles of the product into the ideal gas equation the volume of the gas needed for the cell reaction can be achieved.
P = Pressure of the gas
V = Volume of the gas
R = Universal gas constant
T = Temperature in kelvin
n = Number of moles of the gas
(b)

Answer to Problem 19.37QP
For the cathode half reaction
Charges flowing through the circuit for 1 minute
Thus obtained number of moles of electron can be used to determine the number of moles of hydrogen
Volume of oxygen can be calculated by using ideal gas equation
Then volume of air flown can be calculated as follows
Explanation of Solution
The volume of air flowing through the fuel cell can calculated in a step by step manner
For the cathode half reaction
charges flowing through the circuit for 1 minute
Thus obtained number of moles of electron can be used to determine the number of moles of hydrogen
Volume of oxygen can be calculated by using ideal gas equation
Then volume of air flown can be calculated as follows
The volume of air with 20% oxygen and pressure 1atm, needed to run a motor of 8.5A for 1 hr was determined as 0.16L.
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Chapter 19 Solutions
EBK GENERAL CHEMISTRY: THE ESSENTIAL CO
- 1. Identify the following alkenes as E or Z NH₂ Br 2. Draw the structures based on the IUPAC names (3R,4R)-3-bromo-4-fluoro- 1-hexene (Z)-4-bromo-2-iodo-3-ethyl- 3-heptene تر 3. For the following, predict all possible elimination product(s) and circle the major product. HO H₂SO4 Heat 80 F4 OH H2SO4 Heat 어요 F5 F6 1 A DII 4 F7 F8 F9 % & 5 6 7 * ∞ 8 BAB 3 E R T Y U 9 F D G H J K O A F11 F10arrow_forwardDraw the major product of this reaction. Ignore inorganic byproducts. ○ O 1. H₂O, pyridine 2. neutralizing work-up a N W X 人 Parrow_forward✓ Check the box under each molecule that has a total of five ẞ hydrogens. If none of the molecules fit this description, check the box underneath the table. tab OH CI 0 Br xx Br None of these molecules have a total of five ẞ hydrogens. esc Explanation Check caps lock shift 1 fn control 02 F2 W Q A N #3 S 80 F3 E $ t 01 205 % 5 F5 & 7 © 2025 McGraw Hill LLC. All Rights Reserved. Terms of Use | Privacy Center | Accessibility FT * 8 R T Y U כ F6 9 FIG F11 F D G H J K L C X V B < N M H option command P H + F12 commandarrow_forward
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- tab esc く Drawing the After running various experiments, you determine that the mechanism for the following reaction occurs in a step-wise fashion. Br + OH + Using this information, draw the correct mechanism in the space below. 1 Explanation Check F2 F1 @2 Q W A os lock control option T S # 3 80 F3 Br $ 4 0105 % OH2 + Br Add/Remove step X C F5 F6 6 R E T Y 29 & 7 F D G H Click and drag to start drawing a structure. © 2025 McGraw Hill LLC. All Rights Reserved. Terms of Use | Privacy Ce A F7 DII F8 C Ո 8 * 9 4 F10 F C J K L C V Z X B N M H command P ge Coarrow_forwardIndicate compound A that must react with ethylbenzene to obtain 4-ethylbenzene-1-sulfonic acid. 3-bromo-4-ethylbenzene-1-sulfonic acid.arrow_forwardPart 1 of 2 Draw the structure of A, the minor E1 product of the reaction. esc I Skip Part Check H₂O, D 2 A + Click and drag to start drawing a structure. -0- F1 F2 1 2 # 3 Q A 80 F3 W E S D F4 $ 4 % 5 F5 ㅇ F6 R T Y F G X 5 & 7 + Save 2025 McGraw Hill LLC. All Rights Reserved. DII F7 F8 H * C 80 J Z X C V B N 4 F9 6arrow_forward
- File Preview The following is a total synthesis of the pheromone of the western pine beetle. Such syntheses are interesting both because of the organic chemistry, and because of the possibility of using species specific insecticides, rather than broad band insecticides. Provide the reagents for each step. There is some chemistry from our most recent chapter in this synthesis, but other steps are review from earlier chapters. (8 points) COOEt COOEt A C COOEt COOEt COOH B OH OTS CN D E See the last homework set F for assistance on this one. H+, H₂O G OH OH The last step is just nucleophilic addition reactions, taking the ketone to an acetal, intramolecularly. But it is hard to visualize the three dimensional shape as it occurs. Frontalin, pheromone of the western pine beetlearrow_forwardFor the reaction below: 1. Draw all reasonable elimination products to the right of the arrow. 2. In the box below the reaction, redraw any product you expect to be a major product. C Major Product: Check + ◎ + X ง © Cl I F2 80 F3 I σ F4 I F5 NaOH Click and drawing F6 A 2025 McGraw Hill LLC. All Rights E F7 F8 $ # % & 2 3 4 5 6 7 8 Q W E R T Y U A S D F G H Jarrow_forwardCan I please get help with this graph. If you can show exactly where it needs to pass through.arrow_forward
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