Strength Of Materials: Mechanics Of Solids
Covers principles and strains, beading stresses in beams, shearing stresses, thin shells, shafts, springs, theories of failures, and analysis of framed structures.Covers principles and strains, beading stresses in beams, shearing stresses, thin shells, shafts, springs, theories of failures, and analysis of framed structures.Covers principles and strains, beading stresses in beams, shearing stresses, thin shells, shafts, springs, theories of failures, and analysis of framed structures.Covers principles and strains, beading stresses in beams, shearing stresses, thin shells, shafts, springs, theories of failures, and analysis of framed structures.Covers principles and strains, beading stresses in beams, shearing stresses, thin shells, shafts, springs, theories of failures, and analysis of framed structures.Covers principles and strains, beading stresses in beams, shearing stresses, thin shells, shafts, springs, theories of failures, and analysis of framed structures.Covers principles and strains, beading stresses in beams, shearing stresses, thin shells, shafts, springs, theories of failures, and analysis of framed structures.Covers principles and strains, beading stresses in beams, shearing stresses, thin shells, shafts, springs, theories of failures, and analysis of framed structures.Covers principles and strains, beading stresses in beams, shearing stresses, thin shells, shafts, springs, theories of failures, and analysis of framed structures.Covers principles and strains, beading stresses in beams, shearing stresses, thin shells, shafts, springs, theories of failures, and analysis of framed structures.Covers principles and strains, beading stresses in beams, shearing stresses, thin shells, shafts, springs, theories of failures, and analysis of framed structures.Covers principles and strains, beading stresses in beams, shearing stresses, thin shells, shafts, springs, theories of failures, and analysis of framed structures.Covers principles and strains, beading stresses in beams, shearing stresses, thin shells, shafts, springs, theories of failures, and analysis of framed structures.Covers principles and strains, beading stresses in beams, shearing stresses, thin shells, shafts, springs, theories of failures, and analysis of framed structures.Covers principles and strains, beading stresses in beams, shearing stresses, thin shells, shafts, springs, theories of failures, and analysis of framed structures.Key FeaturesFormat Dimensions Publication datePublisher Imprint