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A beam is designed with notches at either end at the compressive reinforcement (top mat) layer (see Fig. 3).
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Each beam was designed with bars spliced at midspan in a constant moment region.
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The RC beams are designed with shear deficiencies and strengthened by externally bonded carbon fibre fabrics.
In order to have minimum shear reinforcement, the reinforced HSC beams were designed with longitudinal steel bar ratios of 0.64 0.72%.
Five RC beams were designed with the fundamental flexural mode frequencies in the range of 6.5 18.0 Hz for the uncracked state.
Based on a numerical model of thermoelastic damping, a multiple-beam tuning-fork structure is designed with high quality factors (Qs) in its two operation modes.
BEAM was designed to protect from such impacts with multiple layers of soft goods including a bladder and a micro-meteoroids and orbital debris (MMOD) shield.
The resonant structure including moving gate of VMGFET is designed with meander-type beams to improve flexibility in vertical direction, and the long-channel device is used to increase the device sensitivity.
The beam ends were designed with standard, RBS, cover-plate, taper flange, and welded haunch respectively.
The equivalent shear regions on the right and left-hand sides of the beam specimens were designed with two stirrup spacings (200 and 300 mm).
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