statics and mechanics of materials 2 edition (Riley) ¼Ö·ç¼Ç DownLoad
statics and mechanics of materials 2 edition (Riley) ¼Ö·ç¼Ç
[¼Ö·ç¼Ç] statics and mechanics of materials 2 edition Á¤¿ªÇаú Àç·á¿ªÇÐ 2ÆÇ ¼Ö·ç¼Ç ÀúÀÚ : William F. Riley, Leroy D. Sturges, Don H. Morris Àú ÃâÆÇ»ç : WILEY 1ÀåºÎÅÍ 11Àå±îÁö ¼Ö·ç¼ÇÀÔ´Ï´Ù.
Preface
General Principles
Concurrent Force Systems
Equilibrium: Concurrent Force Systems
Stress, Strain, and Deformation: Axial Loading
Equivalent Force/Moment Systems
Equilibrium: Rigid and Deformable Bodies
Torsional Loading: Shafts
Flexural Loading: Stresses in Beams
Flexural Loading: Beam Deflections
Combined Static Loading
Columns
Appendix A: Tables of Properties
Answers to Selected Problems
Index.~STATICS AND MECHANICS OF MATERIALS, 2nd Edition
RILEY, STURGES AND MORRIS
Chapter 1
1-1 Calculate the mass m of a body that weighs 600 lb at the surface of the earth. SOLUTION
m
1-2
W g
600 18.63 slug .................................................... Ans. 32.2
Calculate the weight W of a body at the surface of the earth if it has a mass m of 675 kg. SOLUTION
W
1-3
mg
675 9.81
6.62 10 3 N 6.62 kN .................................. Ans.
If a man weighs 180 lb at sea level, determine the weight W of the man (a) At the top of Mt. McKinley (20,320 ft above sea level). (b) At the top of Mt. Everest (29,028 ft above sea level). SOLUTION
W
Therefore: where (a)
Gme m re2 Wh rh2 Gme m 2.092032 10 7 ft
2 2
W0 r02 r0 rh r0 h 2.090 10 7 Wh W0 r02 rh2
2.090 10 7 ft 2.0320 10 4
180 2.090 10 7 2.092032 10 7 2.9028 10 4
179.7 lb ...................................... Ans. 2.0929028 10 7 ft
(b)
rh
r0
h 2.090 10 7 Wh W0 r02 rh2
180
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