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Fundamental Principles of Structural Mechanics
Continuous Beams and Frames with Straight Prismatic Mem
11 other sections not shown
actual algebraic analysis angle applied load arch assumed auxiliary force system axes axial load axial stress axis bending calculated carry-over factors change in length coefficients columns computed concentrated load conjugate beam constant continuous beam continuous frame continuous truss corrections cross section dead load deflection determined distribution factors elastic curve end couples end moments end rotations equal to unity Example expressed in terms fixed-end moments flange frame in Fig ft-kips funicular girders Hardy Cross hinged Hooke's law horizontal displacement inertia influence diagram joint kips per foot live load maximum ments MFab MFba MFbc moment-distribution method moments in Fig obtained panel Problem procedure reciprocal theorem redundant forces shearing stress shown in Fig simply supported slope-deflection equations solution statically indeterminate strain energy structure substituted Suspension Bridges symmetrical tion uniform load vertical displacement Vierendeel truss Williot diagram