Chemistry
Chemistry
9th Edition
ISBN: 9781133611097
Author: Steven S. Zumdahl
Publisher: Cengage Learning
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Textbook Question
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Chapter 6, Problem 1RQ

Define the following terms: potential energy, kinetic energy, path-dependent function, state function, system, surroundings.

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Interpretation Introduction

Interpretation:  To understand the concepts of potential energy, kinetic energy , path-dependent function, system, state functions and surrounding.

Answer to Problem 1RQ

Answer

  • Potential energy (U): Potential energy is an energy that are stored in an object not in motion and ability of becoming active.
  • Kinetic energy (KE): The energy possessed by an object due to its motion. Kinetic energy depending upon the mass (m) and velocity (v) of an object.

                                       KE= 12mv2

  • Path-dependent function: The function which depends on the path from two value

    called path dependent functions. There are two common path dependent functions, heat and work.

  • State function: The state function or state property of a system assign the properties of a systems depends upon only its present state not past or future state.
  • System: In thermodynamics the system is defined as quantity of matter or region in the universe.
  • Surrounding: Surrounding is include everything else around the system in the universe.

Explanation of Solution

Explanation

  • Potential energy (U): Potential energy is an energy that are stored in an object not in motion and ability of becoming active.

    Chemistry, Chapter 6, Problem 1RQ , additional homework tip  1

    Figure 1

    Example: A ball on the table (having a mass is a potential energy)-see in Figure.1

  • Kinetic energy (KE): The energy possessed by an object due to its motion. Kinetic energy depending upon the mass (m) and velocity (v) of an object.

                                       KE= 12mv2

    Example: The ball fall down from the table. See in fig.1

  • Path-dependent function: The function which depends on the path from two value

    called path dependent functions. There are two common path dependent functions, heat and work.

    Example: Ice melting.

    Explanation: In the process of ice melting, the path functions are heat and work.

    These heat and work can explain how way the ice melting (absorb heat energy to get melt).

  • State function: The state function or state property of a system assign the properties of a systems depends upon only its present state not past or future state.

    Example: Internal energy of a ball.

    Explanation: (see in Figure.1) The internal energy of a ball is consider the initial and final of the process (fall down).

  • System: In thermodynamics the system is defined as quantity of matter or region in the universe.

    Chemistry, Chapter 6, Problem 1RQ , additional homework tip  2

    Figure 2

  • Surrounding: Surrounding is include everything else around the system in the universe.

    Example: A conical flask containing a solution.

    Explanation: ( See in the fig.2) In this case we consider the conical flask containing solution in which the solution is the system and other than the solution is surrounding.

Conclusion

Conclusion

The given terms were defined.

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Chapter 6 Solutions

Chemistry

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J/g of energy when burned...Ch. 6 - A 150.0-g sample of a metal at75.0C is added to...Ch. 6 - A 110.-g sample of copper (specific heat capacity...Ch. 6 - In a coffee-cup calorimeter, 50.0 mL of 0.100 M...Ch. 6 - In a coffee-cup calorimeter, 100.0 mL of 1.0 M...Ch. 6 - A coffee-cup calorimeter initially contains 125 g...Ch. 6 - In a coffee-cup calorimeter, 1.60 g NH4NO3 is...Ch. 6 - Consider the dissolution of CaCl2:...Ch. 6 - Consider the reaction...Ch. 6 - The heat capacity of a bomb calorimeter was...Ch. 6 - The combustion of 0.1584 g benzoic acid increases...Ch. 6 - The enthalpy of combustion of solid carbon to form...Ch. 6 - Combustion reactions involve reacting a substance...Ch. 6 - Given the following data calculate H for the...Ch. 6 - Prob. 72ECh. 6 - Given the following data 2O3(g) 3O2(g)H = 427 kJ...Ch. 6 - Calculate H for the reaction N2H4(l) + O2(g) ...Ch. 6 - Given the following data...Ch. 6 - Given the following data...Ch. 6 - Give the definition of the standard enthalpy of...Ch. 6 - Write reactions for which the enthalpy change will...Ch. 6 - Use the values ofHf in Appendix 4 to calculate H...Ch. 6 - Use the values of Hf in Appendix 4 to calculate H...Ch. 6 - The Ostwald process for the commercial production...Ch. 6 - Calculate H for each of the following reactions...Ch. 6 - The reusable booster rockets of the space shuttle...Ch. 6 - The space shuttle Orbiter utilizes the oxidation...Ch. 6 - Consider the reaction...Ch. 6 - The standard enthalpy of combustion of ethene gas,...Ch. 6 - Water gas is produced from the reaction of steam...Ch. 6 - Syngas can be burned directly or converted to...Ch. 6 - Ethanol (C2H5OH) has been proposed as an...Ch. 6 - Methanol (CH3OH) has also been proposed as an...Ch. 6 - Some automobiles and buses have been equipped to...Ch. 6 - Acetylene (C2H2) and butane (C4H10) are gaseous...Ch. 6 - Prob. 93ECh. 6 - The complete combustion of acetylene, C2H2(g),...Ch. 6 - It has been determined that the body can generate...Ch. 6 - One way to lose weight is to exercise! 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