Calculate the numerical value of each of the dimensionless parameters listed in the table. Be sure to check that the ratio is actually dimensionless after you insert the values. (Round your answer for hot water to one decimal place.) (Round your answer for water in river to two decimal places.) Click the icon to view the table to complete. Click the icon to view the table of properties of air and water. Click the icon to view the conversion table. Click the icon to view the factors for conversions involving temperature differences. Click the icon to view common derived units in the Sl system Situation Name Expression Value Prandtl number, Pr (a)Hot water 2.391 k Vw 38.34 (b) Water in a river Froude number, Fr gH - X More Info More Info SI Unit Dimension Base Sl Units Derived from Temperature Change Force (F) newton [N] 1 K 1 °C = 1.8 °F = 1.8 °R F m a kg m 1 N 1 Force mass times acceleration joule [J] Energy (E) E F d kg m2 Energy force times distance 1 J 1 N m1 Print Done watt [W] Power (P) Е P = kg m2 1 W 1-= 1 S Power energy per time Pressure (P) pascal [Pa] kg F P - A 1 Pa 1 = 1 2 m 2 m s Pressure force per area volt [V Voltage (V) P V kg m2 W 1V 1 = 1 A Voltage power per current Data Table Property Symbol Units Value -4 4 x 10 kg/(m s) Dynamic viscosity Thermal conductivity W/(m K) 0.7 Specific heat cal/(g °C) 1 Water depth Н m Water speed cm/s 210 Print Done X
Calculate the numerical value of each of the dimensionless parameters listed in the table. Be sure to check that the ratio is actually dimensionless after you insert the values. (Round your answer for hot water to one decimal place.) (Round your answer for water in river to two decimal places.) Click the icon to view the table to complete. Click the icon to view the table of properties of air and water. Click the icon to view the conversion table. Click the icon to view the factors for conversions involving temperature differences. Click the icon to view common derived units in the Sl system Situation Name Expression Value Prandtl number, Pr (a)Hot water 2.391 k Vw 38.34 (b) Water in a river Froude number, Fr gH - X More Info More Info SI Unit Dimension Base Sl Units Derived from Temperature Change Force (F) newton [N] 1 K 1 °C = 1.8 °F = 1.8 °R F m a kg m 1 N 1 Force mass times acceleration joule [J] Energy (E) E F d kg m2 Energy force times distance 1 J 1 N m1 Print Done watt [W] Power (P) Е P = kg m2 1 W 1-= 1 S Power energy per time Pressure (P) pascal [Pa] kg F P - A 1 Pa 1 = 1 2 m 2 m s Pressure force per area volt [V Voltage (V) P V kg m2 W 1V 1 = 1 A Voltage power per current Data Table Property Symbol Units Value -4 4 x 10 kg/(m s) Dynamic viscosity Thermal conductivity W/(m K) 0.7 Specific heat cal/(g °C) 1 Water depth Н m Water speed cm/s 210 Print Done X
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Question
What is the Froude number given the following?

Transcribed Image Text:Calculate the numerical value of each of the dimensionless parameters listed in the table. Be sure to check that the ratio is actually dimensionless after you insert the values.
(Round your answer for hot water to one decimal place.)
(Round your answer for water in river to two decimal places.)
Click the icon to view the table to complete.
Click the icon to view the table of properties of air and water.
Click the icon to view the conversion table.
Click the icon to view the factors for conversions involving temperature differences.
Click the icon to view common derived units in the Sl system
Situation
Name
Expression
Value
Prandtl number, Pr
(a)Hot water
2.391
k
Vw
38.34
(b) Water in a river
Froude number, Fr
gH
![- X
More Info
More Info
SI Unit
Dimension
Base Sl Units
Derived from
Temperature Change
Force (F)
newton [N]
1 K 1 °C
= 1.8 °F
= 1.8 °R
F m a
kg m
1 N 1
Force
mass times acceleration
joule [J]
Energy (E)
E F d
kg m2
Energy force times distance
1 J 1 N m1
Print
Done
watt [W]
Power (P)
Е
P =
kg m2
1 W 1-= 1
S
Power energy per time
Pressure (P)
pascal [Pa]
kg
F
P -
A
1 Pa 1
= 1
2
m
2
m s
Pressure force per area
volt [V
Voltage (V)
P
V
kg m2
W
1V 1 = 1
A
Voltage power per current
Data Table
Property
Symbol
Units
Value
-4
4 x 10
kg/(m s)
Dynamic viscosity
Thermal conductivity
W/(m K)
0.7
Specific heat
cal/(g °C)
1
Water depth
Н
m
Water speed
cm/s
210
Print
Done
X](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa061449e-1e75-4fa5-9e02-82a00bd019ab%2F91c6ab61-924c-4e4c-910d-f56a3479f613%2F4w7g3o5.png&w=3840&q=75)
Transcribed Image Text:- X
More Info
More Info
SI Unit
Dimension
Base Sl Units
Derived from
Temperature Change
Force (F)
newton [N]
1 K 1 °C
= 1.8 °F
= 1.8 °R
F m a
kg m
1 N 1
Force
mass times acceleration
joule [J]
Energy (E)
E F d
kg m2
Energy force times distance
1 J 1 N m1
Print
Done
watt [W]
Power (P)
Е
P =
kg m2
1 W 1-= 1
S
Power energy per time
Pressure (P)
pascal [Pa]
kg
F
P -
A
1 Pa 1
= 1
2
m
2
m s
Pressure force per area
volt [V
Voltage (V)
P
V
kg m2
W
1V 1 = 1
A
Voltage power per current
Data Table
Property
Symbol
Units
Value
-4
4 x 10
kg/(m s)
Dynamic viscosity
Thermal conductivity
W/(m K)
0.7
Specific heat
cal/(g °C)
1
Water depth
Н
m
Water speed
cm/s
210
Print
Done
X
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