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Timothy A. Philpot - Mechanics of materials _ an integrated learning system-John Wiley (2017)

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v

30 kN

v

12 kips

2 kips/ft

x

x

A

B

H

A

B

C

3 m 3 m

6 ft 4 ft

FIGURE p10.38c

FIGURE p10.41

A

v

B

5 kN/m

3 m 6 m

3 m

C

H

x

p10.42 The solid 1.125 in. diameter steel [E = 29,000 ksi] shaft

shown in Figure P10.42 supports two pulleys. For the loading

shown, determine

(a) the shaft deflection at pulley B.

(b) the shaft deflection at pulley C.

FIGURE p10.38d

p10.39 The simply supported beam shown in Figure P10.39

consists of a W24 × 94 structural steel wide-flange shape

[E = 29,000 ksi; I = 2,700 in. 4 ]. For the loading shown, determine the

beam deflection at point C.

A

B

C

A

v

3.2 kips/ft

FIGURE p10.39

36 kips

B

14 ft 7 ft 7 ft

p10.40 The simply supported beam shown in Figure P10.40

consists of a W410 × 60 structural steel wide-flange shape

[E = 200 GPa; I = 216 × 10 6 mm 4 ]. For the loading shown, determine

the beam deflection at point B.

C

D

x

FIGURE p10.42

10 in. 15 in.

200 lb

p10.43 The cantilever beam shown in Figure P10.43 consists

of a rectangular structural steel tube shape [E = 29,000 ksi;

I = 1,710 in. 4 ]. For the loading shown, determine

(a) the beam deflection at point A.

(b) the beam deflection at point B.

120 lb

v

60 kN

45 kN.m

v

200 kip.ft

18 kips

A

B

3 m 6 m

FIGURE p10.40

C

x

A

B

6 ft 9 ft

FIGURE p10.43

C

x

p10.41 The cantilever beam shown in Figure P10.41 consists

of a rectangular structural steel tube shape [E = 29,000 ksi;

I = 476 in. 4 ]. For the loading shown, determine

(a) the beam deflection at point B.

(b) the beam deflection at point C.

p10.44 The simply supported beam shown in Figure P10.44

consists of a W21 × 44 structural steel wide-flange shape [E =

29,000 ksi; I = 843 in. 4 ]. For the loading shown, determine

(a) the beam deflection at point A.

(b) the beam deflection at point C.

442

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