BME 101 Introduction to Biomedical Engineering Shown here is the Hawking equation that describes radiation from black holes RAke 2hG Where: S- entropy (J/K) A-area of the event horizon (m') k- Boltzman's constant (m kg/s K) C- speed of light h- Planck's constant (m? kg/s) G-universal gravitation constant (m'/kg s') a) Using the equation and units of the other terms, find the units for c. b) In this system of units, c = 2.99 x 10. Convert this to miles/hour.
BME 101 Introduction to Biomedical Engineering Shown here is the Hawking equation that describes radiation from black holes RAke 2hG Where: S- entropy (J/K) A-area of the event horizon (m') k- Boltzman's constant (m kg/s K) C- speed of light h- Planck's constant (m? kg/s) G-universal gravitation constant (m'/kg s') a) Using the equation and units of the other terms, find the units for c. b) In this system of units, c = 2.99 x 10. Convert this to miles/hour.
Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
Section: Chapter Questions
Problem 1.1P
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BME 101 Introduction to Biomedical Engineering
Shown here is the Hawking equation that describes radiation from black holes
nAkc
2hG
Where:
S-entropy (J/K)
A- area of the event horizon (m2)
k- Boltzman's constant (m kg/s' K)
C- speed of light
h-Planck's constant (m? kg/s)
a) Using the equation and units of the other terms, find the units for c.
b) In this system of units, c = 2.99 x 10°. Convert this to miles/hour.
G- universal gravitation constant (m'/kg s')
50°C is d 50°C is d 50°C is d
S= 4.18 s= 4.18 5= 4.18
•..
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