Solutions for Fundamentals of Heat and Mass Transfer
Problem 9.1P:
The one-dimensional plane wall of Figure 3.1 is of thickness L=75mm and thermal conductivity k=5W/mK...Problem 9.2P:
Using the values of density for water in Table A.6, calculate the volumetric thermal expansion...Problem 9.3P:
Consider an object of Characteristic length 0.01 m and a situation for which the temperature...Problem 9.4P:
To assess the efficacy of different liquids for cooling by natural convection, it is convenient to...Problem 9.5P:
In many cases, we are concerned with free convection involving gases that are contained within...Problem 9.6P:
The heat transfer rate due to free convection from a vertical surface, 1 m high and 0.6 m wide, to...Problem 9.7P:
Consider a large vertical plate with a uniform surface temperature of 130°C suspended in quiescent...Problem 9.8P:
For laminar free convection flow on a vertical place, the recommended values of C and n for use in...Problem 9.9P:
Consider an array of vertical rectangular tins, which is to be used to cool an electronic device...Problem 9.10P:
A number of thin plates are to be cooled by vertically suspending them in a water bath at a...Problem 9.15P:
The plate described in Problem 9.14 has been used in an experiment to determine the free convection...Problem 9.16P:
Determine the average convection heat transfer coefficient for the 2.5-m-high vertical walls of a...Problem 9.17P:
Consider a vertical plate of dimension 0.025m0.50m in that is at Ts=100C in a quiescent environment...Problem 9.18P:
During a winter day, the window of a patio door with a height of 1.8 m and width of 1.0 m shows a...Problem 9.21P:
A household oven door of 0.5-m height and 0.7-m width reaches an average surface temperature of 32°C...Problem 9.22P:
Consider a vertical, single-pane window of equivalent width and height (W=L=1m) . The interior...Problem 9.23P:
Consider laminar flow about a vertical isothermal plate of length L, providing an average heat...Problem 9.24P:
Consider the conveyor system described in Problem 7.24, but under conditions for which the conveyor...Problem 9.26P:
Consider an experiment to investigate the transition to turbulent flow in a tree convection boundary...Problem 9.27P:
The vertical rear window of an automobile is of thickness L=8mm and height H=0.5m and contains...Problem 9.31P:
A refrigerator door has a height and width of H=1mandW=0.65m , respectively, and is situated in a...Problem 9.33P:
In the central receiver concept of a solar power plant, many heliostats at ground level are used to...Problem 9.35P:
Airflow through a long, 0.2-m-square air conditioning duct maintains the outer duct surface...Problem 9.37P:
An electrical heater in the form of a horizontal disk of 400-mm diameter is used to heat the bottom...Problem 9.38P:
Consider a horizontal 6-mm-thick, 100-mm-long straight fin fabricated from plain carbon steel...Problem 9.42P:
Many laptop computers are equipped with thermal management systems that involve liquid cooling of...Problem 9.45P:
At the end of its manufacturing process, a silicon wafer of diameter D=150mm , thickness =1mm , and...Problem 9.47P:
Integrated circuit (IC) boards are stacked within a duct and dissipate a total of 500 W. The duct...Problem 9.58P:
A horizontal tube of 12.5-mm diameter with an outer surface temperature of 240°C is located in a...Problem 9.65P:
Common practice in chemical processing plants is to clad pipe insulation with a durable, thick...Problem 9.66P:
Consider the electrical heater of Problem 7.49. If the blower were (o malfunction, terminating...Problem 9.69P:
A billet of stainless steel, AISI 316, with a diameter of 150 mm and a length of 500 mm emerges from...Problem 9.70P:
Lone stainless steel rods of 50-mm diameter are preheated to a uniform temperature of 1000 K before...Problem 9.71P:
Hot air flows from a furnace through a 0.15-m-diameter, thin-walled steel duct with a velocity of 3...Problem 9.72P:
A biological fluid moves at a flow rate of m=0.02kg/s through a coiled, thin-walled, 5-mm-diameter...Problem 9.77P:
A sphere of 25-mm diameter contains an embedded electrical healer. Calculate the power required to...Problem 9.80P:
A vertical array of circuit boards is immersed in quiescent ambient air at T=17C . Although the...Problem 9.82P:
The front door of a dishwasher of width 580 mm has a vertical air vent that is 500 mm in height with...Problem 9.83P:
A natural convection air healer consists of an array of parallel, equally spaced vertical plates,...Problem 9.84P:
A bank of drying ovens is mounted on a rack in a room with an ambient air temperature of 27°C. The...Problem 9.88P:
To reduce heat losses, a horizontal rectangular duct that is W=0.80m wide and H=0.3m in high is...Problem 9.93P:
A 50-mm-thick air gap separates two horizontal metal plates that form the top surface of an...Problem 9.95P:
A vertical, double-pane window, which is 1 m on a side and has a 25-mm gap tilled with atmospheric...Problem 9.96P:
The top surface (0.5m0.5m) of an oven is 60°C for a particular operating condition when the room air...Problem 9.99P:
Consider the cylindrical. 0.12-m-diamter radiation shield of Example 9.5 that is installed...Problem 9.101P:
A solar collector design consists of an inner tube enclosed concentrically in an outer tube that is...Problem 9.107P:
Liquid nitrogen is stored in a thin-walled spherical vessel of diameter Di=1m . The vessel is...Problem 9.118P:
A water bath is used to maintain canisters containing experimental biological reactions at a uniform...Browse All Chapters of This Textbook
Chapter 1 - IntroductionChapter 2 - Introduction To ConductionChapter 3 - One-dimensional, Steady-state ConductionChapter 4 - Two-dimensional, Steady-state ConductionChapter 5 - Transient ConductionChapter 6 - Introduction To ConvectionChapter 7 - External FlowChapter 8 - Internal FlowChapter 9 - Free ConvectionChapter 10 - Boiling And Condensation
Book Details
Completely updated, the seventh edition provides engineers with an in-depth look at the key concepts in the field. It incorporates new discussions on emerging areas of heat transfer, discussing technologies that are related to nanotechnology, biomedical engineering and alternative energy. The example problems are also updated to better show how to apply the material. And as engineers follow the rigorous and systematic problem-solving methodology, they'll gain an appreciation for the richness and beauty of the discipline.
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