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Page 191
( a ) Beam Span . For simple beams , the span shall be taken as the distance
from face to face of supports , plus one - half the required length of bearing at
each end ; for continuous beams , the span is the distance between centers of
bearings ...
( a ) Beam Span . For simple beams , the span shall be taken as the distance
from face to face of supports , plus one - half the required length of bearing at
each end ; for continuous beams , the span is the distance between centers of
bearings ...
Page 200
International Conference of Building Officials. in which C . = slenderness factor .
le = effective length of beam , inches , from the following table . 1 = unsupported
length of beam , inches . d = depth of beam , inches . b = breadth of beam ,
inches ...
International Conference of Building Officials. in which C . = slenderness factor .
le = effective length of beam , inches , from the following table . 1 = unsupported
length of beam , inches . d = depth of beam , inches . b = breadth of beam ,
inches ...
Page 320
( 8 - 1 ) ( g ) Requirements for T - beams . In T - beam construction , the slab and
beam shall be built integrally or otherwise effectively bonded together . 1 . The
effective flange width to be used in the design of symmetrical Tbeams shall not ...
( 8 - 1 ) ( g ) Requirements for T - beams . In T - beam construction , the slab and
beam shall be built integrally or otherwise effectively bonded together . 1 . The
effective flange width to be used in the design of symmetrical Tbeams shall not ...
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Contents
Effective Use of the Uniform Building Code | 18 |
497 | 36 |
Part IIDefinitions and Abbreviations | 38 |
Copyright | |
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Common terms and phrases
accordance allowable applied approved axial bars beam bearing bending bolts building building official Chapter column compression compressive stress computed concrete conform connections considered construction continuous cover Decking depth determined diameter direction distance Division edge effective elements equal exceed EXCEPTION exit exterior face factor feet fire fire-resistive flange flexural floor foot forces Formula frame girders grade Grain greater Group height horizontal inches joints lateral least length less limited live load load located lumber masonry materials maximum Occupancies openings panel parallel percent permitted placed plate portion pounds prestressing protected ratio reinforcement resist roof rooms Section Select Structural separation shear side slab spacing span specified splices square inch steel strength stress Structural Stud surface Table taken tension tests thickness tion Type U.B.C. Standard unit values vertical walls welds width wire wood yield