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Livro Hibbeler - 7ª ed Resistencia Materiais (Livro)

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RESPOSTAS 615<br />

7.70.<br />

7.71.<br />

7.73.<br />

7.74.<br />

7.75.<br />

7.77.<br />

7.78.<br />

7.79.<br />

7.81.<br />

7.82.<br />

b( 6hlh2 + 3h2b - 8hi)<br />

e=<br />

2h3 + 6bh2 - (h - 2h!)3<br />

e = O<br />

b( 6h1h2 + 3bh2 - 8hi)<br />

e=<br />

(h + 2ht)3 + 6bh2<br />

e= 43,30 mm<br />

e= 70 mm<br />

2v'3<br />

e= 3 -a<br />

qA = O, qmáx = 375 N/m<br />

qmáx = 84,85 kN/m<br />

h=171 mm<br />

4r( sen a - a c os a)<br />

e=<br />

7.83. e= 2r<br />

2a - sen 2a<br />

7.84. F c = 0,987 kN, F D = 6,906 kN<br />

7.85. V máx = 20,37 kN<br />

7.86. Vmáx = 3,731 kN<br />

7.87. qA = 0, q8 = 1,21 kN/m, qc = 3,78 kN/m<br />

7.89. qA = 145 kN/m, q8 = 50,4 kN/m,<br />

Tmáx = 17,2 MPa<br />

7.90. TA = 1,335 MPa, Te = O MPa<br />

7.91. Ts = 1,781 MPa<br />

7.93. VAB = 49,78 kN<br />

Capítulo 8<br />

8.1. t = 18,8 mm<br />

8.2. t0 = 18,875 m<br />

8.3. Caso (a): u1 = 16,67 MPa, u2 = O<br />

Caso (b): u1 = 16,67 MPa, u2 = 8,33 MP a<br />

8.4. u1 = 28,88 MPa, u 2 = 14,44 MPa<br />

8.5. p = 36,0 MPa<br />

8.6. u1 = 4,2 MPa, u2 = O<br />

8.7. u1 = 4,2 MPa, u2 = 2,1 MPa<br />

8.8. u1 = 13,33 MPa, o= 0,0422 mm,p = 0,199 MPa<br />

8.9.

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