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MATERIALS Mild and hightensile steel their manufacture
STRUCTURAL MECHANICS Conditions for equilibrium
STRUCTURAL ANALYSIS Bending moment and shear
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angles applied area of B.M. axes axis B.M. diagram bars bending stress Bessemer process bricks bridge calculated cantilever cement cent centre coefficients column compressive stress concentrated loads contraflexure dead load deflexion due depth diagonal diameter displacement distance elastic line end fixed equal equations Example find the maximum fixed end flange formula free B.M. free end ft.-tons girder grain hammer blow Hardy Cross horizontal inertia influence line Institution of Structural joints joist L.C.C. By-laws L.H. end live load maximum B.M. maximum shear maximum value mid-span negative B.M. open-hearth process panel points parallel plate point load Portland Cement positive B.M. ratio reactions Reinforced Concrete rivets rolling loads safe load safe stress shear stress shown in Fig slab span strength Structural Engineers strut tensile tension thickness timber uniformly distributed load unit load vertical welds Williot diagram zero