Chemistry: Principles and Reactions
8th Edition
ISBN: 9781305079373
Author: William L. Masterton, Cecile N. Hurley
Publisher: Cengage Learning
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Textbook Question
Chapter 8, Problem 54QAP
How many L
atm are equal to 12.2 kJ of work?
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Chapter 8 Solutions
Chemistry: Principles and Reactions
Ch. 8 - Principles of Heat Flow Titanium is a metal used...Ch. 8 - Prob. 2QAPCh. 8 - Copper is used in building the integrated...Ch. 8 - Mercury was once used in thermometers and...Ch. 8 - The specific heat of aluminum is 0.902J/gC. How...Ch. 8 - Chromium has a specific heat of 0.450J/gC. How...Ch. 8 - Magnesium sulfate is often used in first-aid hot...Ch. 8 - Sodium chloride is added in cooking to enhance the...Ch. 8 - When 375 mL of water (d=1.00g/mL) at 32C are mixed...Ch. 8 - How many mL of water at 10C (2 significant...
Ch. 8 - When one mol of KOH is neutralized by sulfuric...Ch. 8 - The heat of neutralization, Hneut, can be defined...Ch. 8 - Fructose is a sugar commonly found in fruit. A...Ch. 8 - In earlier times, ethyl ether was commonly used as...Ch. 8 - Isooctane is a primary component of gasoline and...Ch. 8 - Ethyl alcohol, C2H5OH, is the intoxicating agent...Ch. 8 - Acetic acid, HC2H3O2, is responsible for the sour...Ch. 8 - Acetylene, C2H2, is used in welding torches. It...Ch. 8 - Salicylic acid, C7H6O3, is one of the starting...Ch. 8 - Methanol (CH3OH) is also known as wood alcohol and...Ch. 8 - Nitrogen oxide (NO) has been found to be a key...Ch. 8 - Small amounts of oxygen gas can be prepared in the...Ch. 8 - In the late eighteenth century Priestley prepared...Ch. 8 - Prob. 24QAPCh. 8 - Strontium metal is responsible for the red color...Ch. 8 - Nitroglycerin, C3H5(NO3)3(l), is an explosive most...Ch. 8 - A typical fat in the body is glyceryl trioleate,...Ch. 8 - Use the same fat described in Question 27. (a)...Ch. 8 - Which requires the absorption of a greater amount...Ch. 8 - Which evolves more heat—freezing 100.0 g of...Ch. 8 - A student is asked to calculate the amount of heat...Ch. 8 - Follow the step-wise process outlined in Problem...Ch. 8 - A lead ore, galena, consisting mainly of lead(II)...Ch. 8 - A reaction used to produce the silicon for...Ch. 8 - Given the following thermochemical equations,...Ch. 8 - Given the following thermochemical equations:...Ch. 8 - Write thermochemical equations for the...Ch. 8 - Write thermochemical equations for the formation...Ch. 8 - Given 2Al2O3(s)4Al(s)+3O2(g)H=3351.4kJ (a) What is...Ch. 8 - Given 2Cr2O3(s)4Cr(s)+3O2(g)H=+2269.4kJ (a) What...Ch. 8 - Limestone, CaCO3, when subjected to a temperature...Ch. 8 - When hydrazine reacts with oxygen, nitrogen gas...Ch. 8 - Use Table 8.3 to obtain AHO for the following...Ch. 8 - Use Table 8.3 to obtain H for the following...Ch. 8 - Use the appropriate tables to calculate H for (a)...Ch. 8 - Use the appropriate tables to calculate H for (a)...Ch. 8 - When one mole of nitroglycerine, C3H5(NO3)3(l)...Ch. 8 - When one mole of calcium carbonate reacts with...Ch. 8 - Chlorine trifluoride is a toxic, intensely...Ch. 8 - When one mole of ethylene gas, C2H4, reacts with...Ch. 8 - Glucose, C6H12O6(s), (H f =1275.2kJ/mol) is...Ch. 8 - When ammonia reacts with dinitrogen oxide gas (H f...Ch. 8 - How many kJ are equal to 3.27 L atm of work?Ch. 8 - How many L atm are equal to 12.2 kJ of work?Ch. 8 - Find (a) E when a gas absorbs 18 J of heat and has...Ch. 8 - Calculate (a) q when a system does 54 J of work...Ch. 8 - Consider the following reaction in a vessel with a...Ch. 8 - Consider the following reaction in the vessel...Ch. 8 - Determine the difference between H and E at 25C...Ch. 8 - For the vaporization of one mole of bromine at...Ch. 8 - Consider the combustion of propane, C3H8, the fuel...Ch. 8 - Consider the combustion of one mole of methyl...Ch. 8 - Butane gas, C4H10, is sold to campers as bottled...Ch. 8 - The BTU (British thermal unit) is the unit of...Ch. 8 - Natural gas companies in the United States use the...Ch. 8 - Prob. 66QAPCh. 8 - Given the following reactions,...Ch. 8 - In World War II, the Germans made use of otherwise...Ch. 8 - Prob. 69QAPCh. 8 - Consider the reaction between methane and oxygen...Ch. 8 - Consider burning ethane gas, C2H6 in oxygen...Ch. 8 - On complete combustion at constant pressure, a...Ch. 8 - Microwave ovens convert radiation to energy. A...Ch. 8 - In 2010, 3.30109 gallons of gasoline were consumed...Ch. 8 - Some solar-heated homes use large beds of rocks to...Ch. 8 - Consider a solution prepared by dissolving 10.00 g...Ch. 8 - Draw a cylinder with a movable piston containing...Ch. 8 - Redraw the cylinder in Question 77 after work has...Ch. 8 - Which statement(s) is/are true about bond...Ch. 8 - Equal masses of liquid A, initially at 100C, and...Ch. 8 - Determine whether the statements given below are...Ch. 8 - An exothermic reaction is carried out in a...Ch. 8 - Determine whether the statements given below are...Ch. 8 - Microwave ovens emit microwave radiation that is...Ch. 8 - On a hot day, you take a six-pack ot a on a pcmc,...Ch. 8 - Prob. 86QAPCh. 8 - The thermite reaction was once used to weld rails:...Ch. 8 - A sample of sucrose, C12H22O11, is contaminated by...Ch. 8 - A wad of steel wool (specific heat=0.45J/gC) at...Ch. 8 - Consider a metal ion A2+ and its nitrate salt, In...
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As the gas trapped in a cylinder with a movable piston cools, 1.34 kJ of work is done on the gas by the surroundings. If the gas is at a constant pressure of 1.33 105 Pa, what is the change of volume (in L) of the gas?
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How many kJ are equal to 3.27 L atm of work?
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In which of the following systems is(are) work done by the surroundings on the system? Assume pressure and temperature are constant. a. 2SO2(g)+O2(g)2SO3(g) b.CO2(s)CO2(g) c. 4NH3(g)+7O2(g)4NO2(g)+6H2O(g) d.N2O4(g)2NO2(g) e.CaCO3(s)CaCO(s)+CO2(g)
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A balloon expands from 0.75 L to 1.20 L as it is heated under a constant pressure of 1.01 105 Pa. Calculate the work (in J) done by the balloon on the environment.
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Dry ice is solid carbon dioxide; it vaporizes at room temperature and normal pressures to the gas. Suppose you put 21.5 g of dry ice in a vessel fitted with a piston (similar to the one in Figure 6.9 but with the weight replaced by the atmosphere), and it vaporizes completely to the gas, pushing the piston upward until its pressure and temperature equal those of the surrounding atmosphere at 24.0C and 751 mmHg. Calculate the work done by the gas in expanding against the atmosphere. Neglect the volume of the solid carbon dioxide, which is very small in comparison to the volume of the gas phase.
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Nitrogen gas (2.75 L) is confined in a cylinder under constant atmospheric pressure (1.01 105 pascals). The volume of gas decreases to 2.10 L when 485 J of energy is transferred as heat to the surroundings. What is the change in internal energy of the gas?
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A gas is cooled and loses 82 J of heat. The gas contracts as it cools, and work done on the system equal to 29 J is exchanged with the surroundings. What are q, w, and U?
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Calculatethe work in joules needed to expanda balloon from5mL to 3.350 L against standard atmosphericpressure. Your lungsprovide that work if you are blowingit up yourself.
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The internal energy of a gas decreases by 1.65 kJ when it transfers 1.87 kJ of energy in the form of heat to the surroundings. (a) Calculate the work done by the gas on the surroundings. (b) Does the volume of gas increase or decrease?
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A piece of titanium metal with a mass of 20.8 g is heated in boiling water to 99.5 C and then dropped into a coffee-cup calorimeter containing 75.0 g of water at 21.7 C. When thermal equilibrium is reached, the final temperature is 24.3 C. Calculate the specific heat capacity of titanium.
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Nitrogen gas is confined in a cylinder with a movable piston under a constant pressure of 9.95 104 Pa. When 695 J of energy in the form of heat is transferred from the gas to the surroundings, its volume decreases by 1.88 L. What is the change in internal energy of the gas?
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The temperature of the cooling water as it leaves the hot engine of an automobile is 240 F. After it passes through the radiator it has a temperature of 175 F. Calculate the amount of heat transferred from the engine to the surroundings by one gallon of water with a specific heat of 4.184 J/g oC.
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