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MCHE 469 Exam Questions with Correct Answers Graded A+

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MCHE 469 Exam Questions with Correct Answers Graded A+ In deriving the fundamental law of conduction heat transfer, we used a special form of an infinite series called a ___ ___ series. - Answers Truncated Taylor The name of the fundamental equation of conduction heat transfer: - Answers Fourier's Law Radiation heat transfer is more efficient in a vacuum than in a gas because it needs no: - Answers medium T/F: The net amount of radiation exchanged between a hot surface and a cold surface depends on the surface radiative properties, the geometric configurations, and the fourth power of the absolute temperatures. - Answers T T/F: Convection heat transfer is governed by the Stefan-Boltzmann Law. - Answers F; Newton's Law of Cooling T/F: The thermal conductivity of a material determines how much heat can be transferred in a material, whereas its thermal diffusivity indicates how fast heat can be transferred. - Answers T T/F: If the outer radius of a pipe or tube is less than the critical radius, then the heat transfer will be decreased, adding more insulation. - Answers F; R=k/h T/F: Fin efficiency tells us how good a fin is with respect to the quantity of heat transfer for a given design, whereas fin effectiveness indicates how fast heat can be transferred from a given fin. - Answers F T/F: The 1D heat flow assumption is useful for fin problems when the fins are thin, and thus the problem can be reduced to a 1D conduction-convection problem. Additionally, this assumption is justifiable because empirical correlations for convection coefficients are only accurate to + or - 5%. - Answers F T/F: In a convective cooling situation, we say that fins will be beneficial when the conductive resistance is low & the convective resistance is high. - Answers T T/F: The area for convection of a straight rectangular fin is equal to the product of its perimeter and the cross sectional area. - Answers F The name of the fundamental equation of radiation heat transfer is: - Answers Stefan-Boltzmann's Law Name two ways that heat can be transferred in solids. Which is more effective? - Answers 1. Lattice vibrations 2. Free electron transfer -Free electron transfer is more effective In a plane wall with thermal conductivity k , if k is constant, the temperature gradient is ___, but if k is a linear function of temperature then the temperature gradient is ___ (___). - Answers linear, non-linear (quadratic) Give two examples of some good conductors of heat; and one example of a poor conductor: - Answers Copper, silver=good rock wool insulation=poor Name three common heat generation sources in heat transfer problems: - Answers vaporizer, boiler, combustor, nuclear reactor Name the two types of convection heat transfer: - Answers free, forced Boiling and condensation are special cases of: - Answers convection What is thermal conductivity? - Answers how much heat in and out T/F: We only see alpha (thermal diffusivity) in transient equations. - Answers T T/F: Boiling and Condensing are included in convection. - Answers T T/F: Conduction and Convection need medium. (gas, liquid, and solid) - Answers T What is a Blackbody? - Answers ideal thermal radiator What are 3 sources of heat generation? - Answers nuclear, chemical, and electrical T/F: In a convection cooling situation, we say that fins will be beneficial when the conductive resistance is low and the convective resistance is high. - Answers T What is the thermal time constant of a system? - Answers Time at which the body reaches 63.2% of its total temperature change.

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Uploaded on
October 30, 2024
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2024/2025
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MCHE 469 Exam Questions with Correct Answers Graded A+

In deriving the fundamental law of conduction heat transfer, we used a special form of an infinite series
called a ___ ___ series. - Answers Truncated Taylor

The name of the fundamental equation of conduction heat transfer: - Answers Fourier's Law

Radiation heat transfer is more efficient in a vacuum than in a gas because it needs no: - Answers
medium

T/F: The net amount of radiation exchanged between a hot surface and a cold surface depends on the
surface radiative properties, the geometric configurations, and the fourth power of the absolute
temperatures. - Answers T

T/F: Convection heat transfer is governed by the Stefan-Boltzmann Law. - Answers F; Newton's Law of
Cooling

T/F: The thermal conductivity of a material determines how much heat can be transferred in a material,
whereas its thermal diffusivity indicates how fast heat can be transferred. - Answers T

T/F: If the outer radius of a pipe or tube is less than the critical radius, then the heat transfer will be
decreased, adding more insulation. - Answers F; R=k/h

T/F: Fin efficiency tells us how good a fin is with respect to the quantity of heat transfer for a given
design, whereas fin effectiveness indicates how fast heat can be transferred from a given fin. - Answers F

T/F: The 1D heat flow assumption is useful for fin problems when the fins are thin, and thus the problem
can be reduced to a 1D conduction-convection problem. Additionally, this assumption is justifiable
because empirical correlations for convection coefficients are only accurate to + or - 5%. - Answers F

T/F: In a convective cooling situation, we say that fins will be beneficial when the conductive resistance
is low & the convective resistance is high. - Answers T

T/F: The area for convection of a straight rectangular fin is equal to the product of its perimeter and the
cross sectional area. - Answers F

The name of the fundamental equation of radiation heat transfer is: - Answers Stefan-Boltzmann's Law

Name two ways that heat can be transferred in solids. Which is more effective? - Answers 1. Lattice
vibrations

2. Free electron transfer



-Free electron transfer is more effective

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