The changing of solid directly to vapor without passing through the liquid state is called: a Evaporation b. Vaporization c. Sublimation d. Condensation

Chemistry
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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7. The changing of solid directly to vapor without passing through the liquid state is called:
c. Sublimation
d. Condensation
a. Evaporation
b. Vaporization
8. A thermodynamics law stating that heat and mechanical energy are inter-convertible and
neither can be created nor destroyed.
a. Zeroth Law of Thermodynamics
b. First Law of Thermodynamics
e. Second Law of Thermodynamics
d. Third Law of Thermodynamies
9. The second law of thermodynamics states that it is impossible for a self-acting machine
unaided by any external agency to transfer heat from one body to another at higher
temperature. This statement is known as:
a. Kelvin-Plank Statement
b. Plank statement
c. Kelvin statement
d. Clausius statement
10. When there is no transfer of the working substance during the process, it is termed as:
c. Nonflow
d. Continuous flow
a. Transient flow
b. Steady-flow
Transcribed Image Text:7. The changing of solid directly to vapor without passing through the liquid state is called: c. Sublimation d. Condensation a. Evaporation b. Vaporization 8. A thermodynamics law stating that heat and mechanical energy are inter-convertible and neither can be created nor destroyed. a. Zeroth Law of Thermodynamics b. First Law of Thermodynamics e. Second Law of Thermodynamics d. Third Law of Thermodynamies 9. The second law of thermodynamics states that it is impossible for a self-acting machine unaided by any external agency to transfer heat from one body to another at higher temperature. This statement is known as: a. Kelvin-Plank Statement b. Plank statement c. Kelvin statement d. Clausius statement 10. When there is no transfer of the working substance during the process, it is termed as: c. Nonflow d. Continuous flow a. Transient flow b. Steady-flow
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