200_Lectures_11_21_post

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Unformatted text preview: (+ ( &% ( 2! * ' () ( ( +! 6 ∆' % ∆ * , ! 0! % ( 3 44% ($ % ( * 0! ! 0! ! %' ( % / ! - &. 0! , % 0 - 1.' ! % %% - .' / % % ' ( # % # ! !" ' 66 &0 ! % - 8. &% 1% 0' %' 1 % % ' %0 Total mass entering the CV during ) t * 1% 0 ( $ 1% 0' − Total mass leaving the CV during t = Net change in mass within the control volume (+ % 0! ' 0! ! % 2 $ (5 * < ( 1% 0' @ ( * # % ! ( .! % !* % 5 9: % 0 % #7 ! #>= 6 % ! *! ! *; # +! 6 % ! * 9= ' % ! ; ! * ! % ? ' A# *; 6 + A< A #:<= 6 A 6 + A 9= 6 A 6 2 1 % #- 8. ' !' ( &6& - ; . ) ' ( %0 ( 3 *% B 2 % C * ' @ ' ( A# :9 ! 9; * ( 5 9: + % ' #1 9; * 5 9: + % ' %C ≈ -+ .A # () #1 * % D=> % 1 ' 6 #: D# 6& A = 6 & A <9# ' ; 6) A #< ; !' . ) ' %* ( ! %0 ( 3 *% B A A 6 ( ) AE - (7 %' # ( ) - A D#>< *; %. % 0 % ! *! ** 44% # ) ! 2 ! 44% 6 ! D #: % # +! % !2 = ; ! 44% 2 #< # 7! 6 6 % !% DD#: 6 D# 6 <9# ;6 %? % % !% # (+ A D + A DD#: % % % C * !* ' m= VA v dmCV = dt min − mout 6 2 % ( % #- 8. 2 () ' 0...
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This note was uploaded on 09/22/2012 for the course ME 200 taught by Professor Gal during the Spring '08 term at Purdue.

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