Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

30
ide 1 Fig. 17.1, p.513 Active Figure 17.2

Transcript of Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Page 1: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 1 Fig. 17.1, p.513

Active Figure 17.2

Page 2: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 2 Table 17.1, p.514

Page 3: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 3 Fig. 17.2, p.515

Active Figure 17.2

Page 4: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 4 Fig. 17.3, p.515

Page 5: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 5 Fig. 17.4, p.516

Page 6: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 6

Classical calculation of Sound Speed

v B

Page 7: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 7

Bulk Modulus for Air

PV nRT

PV PV nRT

PV nRT PV

adiabatic W U

PV 5

2nRT

PV 7

2nRT _ _ And V

5

2nR

T

Pbut

P BV

VBV PV

B52

nRTP

72

nRT

B 1.4P

Page 8: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 8

PV nRT M

MA

RT

P RTMA

PMA

RT

B 1.4P

PMA

RT

Page 9: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 9

v B

B 1.4P

PMA

RT

v 1.4RT

MA

Page 10: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 10

v 1.4RT

MA

1.4 8.314J / K / mole 273K

0.029kg / mole331.0(m / s)

Page 11: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 11 Fig. 17.5, p.518

Page 12: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 12

Page 13: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 13 Table 17.2, p.520

Page 14: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 14 Fig. 17.6, p.521

Page 15: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 15 Fig. 17.7, p.523

Page 16: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 16 Fig. 17.8, p.523

Active Figure 17.8

Page 17: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 17 Fig. 17.9a, p.524

Active Figure 17.9

Page 18: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 18 Fig. 17.9b, p.524

Page 19: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 19 Fig. 17.10a, p.527

Page 20: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 20 Fig. 17.10b, p.527

Page 21: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 21 Fig. 17.13, p.530

Page 22: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 22 Table 17.3, p.531

Page 23: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 23 Fig. 17.15, p.532

Page 24: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 24 Fig. P17.23, p.537

Page 25: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 25 Fig. P17.31, p.538

Page 26: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 26 Fig. P17.40, p.539

Page 27: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 27 Fig. P17.47, p.539

Page 28: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 28 Fig. P17.64, p.541

Page 29: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 29 Fig. P17.69, p.541

Page 30: Slide 1Fig. 17.1, p.513 Active Figure 17.2. Slide 2Table 17.1, p.514.

Slide 30 Fig. P17.71, p.542