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Question
SWGFAST offers detailed standards for fingerprint identification. Discuss in length about fingerprint identification standards and what makes fingerprint identification an objective science rather than a subjective opinion? Why can, when discussing fingerprint identification, an examiner be 100% sure of an inclusion or exclusion of a print when matched to an exemplar? Discuss the "points of identity" in latent print identification.
How many breaths can the diver take from this tank at a depth of 35 m? Assume that the temperature remains constant.
At what distance below the bottom of the tank is the cross-sectional area of the stream equal to one-half the area of the hole?
In Figure P2.7 a linear intermittent motion mechanism is shown. Given the angular velocity of the crank and its radius, r2, how would velocity and acceleration of the slider change during the cycle of the crank?
Find the rate of energy flow through a copper block of cross-sectional area 15 cm^2 and length 8.0 cm when a temperature difference of 30 degree C is established across the block
Using a centrifugal pump, and a flow rate of 60 gal/min, calculate the break hp of the pump using water with a density of 62.4lbm/ft3 and do the same for a nonviscous liquid having a density of 0.85g/cm3.
Now describe the collision from the point of view of an observer at rest by the track. Is momentum conserved? How much kinetic energy is lost in this frame?
A turbine rotor of mass 200 kg has an unbalanced mass of 15 kg. It is supported on a foundation which has an equivalent stiffness of 5,000 N/m and a damping ratio of If the rotor is found to vibrate with a deflection of 0.1 m at resonance
two tanks tank a and tank b are separated by a partition. initially tank a contains 2-kg steam at 1 mpa and 300degc
a railcar with an overall mass of 75000 kg traveling with a velocity vi is approaching a barrier equipped with a bumper
the water behind hoover dam in nevada is 206m higher than the colorado river below it. at what rate must water pass
Calculate the total % β and the % eutectic microconstituent at room temperature for the following lead-tin alloys: 10% Sn, 20% Sn, 50% Sn, 60% Sn, 80% Sn, and 95% Sn. Using Figure 11-18, plot the strength of the alloys versus the % β and the % eut..
At room temperature (295 K), find the occupation number for a fermion state
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