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thermodynamics1.blogspot.com

Thermodynamics

Tuesday, October 26, 2010. Potential - PE = mgz (mass*gravitational acceleration*vertical distance). Kinetic - KE = .5mV 2 (.5*mass*velocity squared). Total Energy equals the sum of internal energy potential energy kinetic energy. E = U PE KE. Energy flow rate (time rate of energy) is equal to the mass flow rate multiplied by the mechanical energy per unit mass. E(dot) = m(dot) * e. M(dot) is the mass flow rate. m(dot) = (rho) * V(dot) where V(dot) is the volume flow rate. Efficiency = output / input.

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Thermodynamics | thermodynamics1.blogspot.com Reviews
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Tuesday, October 26, 2010. Potential - PE = mgz (mass*gravitational acceleration*vertical distance). Kinetic - KE = .5mV 2 (.5*mass*velocity squared). Total Energy equals the sum of internal energy potential energy kinetic energy. E = U PE KE. Energy flow rate (time rate of energy) is equal to the mass flow rate multiplied by the mechanical energy per unit mass. E(dot) = m(dot) * e. M(dot) is the mass flow rate. m(dot) = (rho) * V(dot) where V(dot) is the volume flow rate. Efficiency = output / input.
<META>
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1 thermodynamics
2 energy
3 forms of energy
4 thermal
5 mechanical
6 electrical
7 magnetic
8 chemical
9 nuclear
10 heat temperature difference
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Thermodynamics | thermodynamics1.blogspot.com Reviews

https://thermodynamics1.blogspot.com

Tuesday, October 26, 2010. Potential - PE = mgz (mass*gravitational acceleration*vertical distance). Kinetic - KE = .5mV 2 (.5*mass*velocity squared). Total Energy equals the sum of internal energy potential energy kinetic energy. E = U PE KE. Energy flow rate (time rate of energy) is equal to the mass flow rate multiplied by the mechanical energy per unit mass. E(dot) = m(dot) * e. M(dot) is the mass flow rate. m(dot) = (rho) * V(dot) where V(dot) is the volume flow rate. Efficiency = output / input.

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thermodynamics1.blogspot.com thermodynamics1.blogspot.com
1

Thermodynamics: October 2010

http://www.thermodynamics1.blogspot.com/2010_10_01_archive.html

Tuesday, October 26, 2010. Potential - PE = mgz (mass*gravitational acceleration*vertical distance). Kinetic - KE = .5mV 2 (.5*mass*velocity squared). Total Energy equals the sum of internal energy potential energy kinetic energy. E = U PE KE. Energy flow rate (time rate of energy) is equal to the mass flow rate multiplied by the mechanical energy per unit mass. E(dot) = m(dot) * e. M(dot) is the mass flow rate. m(dot) = (rho) * V(dot) where V(dot) is the volume flow rate. Efficiency = output / input.

2

Thermodynamics: Energy

http://www.thermodynamics1.blogspot.com/2010/10/energy.html

Tuesday, October 26, 2010. Potential - PE = mgz (mass*gravitational acceleration*vertical distance). Kinetic - KE = .5mV 2 (.5*mass*velocity squared). Total Energy equals the sum of internal energy potential energy kinetic energy. E = U PE KE. Energy flow rate (time rate of energy) is equal to the mass flow rate multiplied by the mechanical energy per unit mass. E(dot) = m(dot) * e. M(dot) is the mass flow rate. m(dot) = (rho) * V(dot) where V(dot) is the volume flow rate. Efficiency = output / input.

3

Thermodynamics: Basics

http://www.thermodynamics1.blogspot.com/2010/10/basics.html

Sunday, October 10, 2010. First Law of Thermodynamics: Conservation of Energy, which states that energy can't be created or destroyed. Energy can only change form. The total amount of energy is constant. Mass (m, kilogram). Length (L, meter). Time (t, seconds). Temperature (T, kelvin). Electric Current (A, ampere). Amount of Light (cd, candela). Amount of Matter (mol, mole). Secondary Dimensions: Formed by combining primary dimensions. Force = Mass x Acceleration. Closed/Control Mass: Mass can't cross th...

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Engineering Notes: Engineering Notes

http://notes-for-engineering.blogspot.com/2010/06/engineering-notes.html

Friday, June 25, 2010. Here I've compiled a list of engineering classes and links to their notes. Processes and Materials in Manufacturing. Subscribe to: Post Comments (Atom). Simple template. Powered by Blogger.

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Engineering Notes: June 2010

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Friday, June 25, 2010. Here I've compiled a list of engineering classes and links to their notes. Processes and Materials in Manufacturing. Subscribe to: Posts (Atom). Simple template. Powered by Blogger.

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Tuesday, October 26, 2010. Potential - PE = mgz (mass*gravitational acceleration*vertical distance). Kinetic - KE = .5mV 2 (.5*mass*velocity squared). Total Energy equals the sum of internal energy potential energy kinetic energy. E = U PE KE. Energy flow rate (time rate of energy) is equal to the mass flow rate multiplied by the mechanical energy per unit mass. E(dot) = m(dot) * e. M(dot) is the mass flow rate. m(dot) = (rho) * V(dot) where V(dot) is the volume flow rate. Efficiency = output / input.

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