Transcript
Page 1: Ph311 Lecture25orig Lecture25.pdfGases (20 (27) d' (3 0) IOC 6) = COO (31) = 50 L 3îC e ) ) (33) P V = - _ coo . L 39 C) Ser"es = —Jer) /ñë=ZrD /-e /- -L 70 n u -rr, ns 9

L 25-1

Page 2: Ph311 Lecture25orig Lecture25.pdfGases (20 (27) d' (3 0) IOC 6) = COO (31) = 50 L 3îC e ) ) (33) P V = - _ coo . L 39 C) Ser"es = —Jer) /ñë=ZrD /-e /- -L 70 n u -rr, ns 9

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Page 3: Ph311 Lecture25orig Lecture25.pdfGases (20 (27) d' (3 0) IOC 6) = COO (31) = 50 L 3îC e ) ) (33) P V = - _ coo . L 39 C) Ser"es = —Jer) /ñë=ZrD /-e /- -L 70 n u -rr, ns 9

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Page 4: Ph311 Lecture25orig Lecture25.pdfGases (20 (27) d' (3 0) IOC 6) = COO (31) = 50 L 3îC e ) ) (33) P V = - _ coo . L 39 C) Ser"es = —Jer) /ñë=ZrD /-e /- -L 70 n u -rr, ns 9

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Page 5: Ph311 Lecture25orig Lecture25.pdfGases (20 (27) d' (3 0) IOC 6) = COO (31) = 50 L 3îC e ) ) (33) P V = - _ coo . L 39 C) Ser"es = —Jer) /ñë=ZrD /-e /- -L 70 n u -rr, ns 9

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Page 6: Ph311 Lecture25orig Lecture25.pdfGases (20 (27) d' (3 0) IOC 6) = COO (31) = 50 L 3îC e ) ) (33) P V = - _ coo . L 39 C) Ser"es = —Jer) /ñë=ZrD /-e /- -L 70 n u -rr, ns 9

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3

[Note that here E = K as in L3 because there is no potential energy.]

Page 7: Ph311 Lecture25orig Lecture25.pdfGases (20 (27) d' (3 0) IOC 6) = COO (31) = 50 L 3îC e ) ) (33) P V = - _ coo . L 39 C) Ser"es = —Jer) /ñë=ZrD /-e /- -L 70 n u -rr, ns 9

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