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Case II: the theoretical resolutions in both range and azimuth are 0.7 m.
The theoretical resolutions are all 0.3 m in both range and azimuth directions.
The relative resolutions have been calculated for an ashmeter model 1.5 (6-liter large bottle and 1.5-liter small bottle); B) Difference between theoretical resolutions and real error for 64 thickness measurements using 4 inner gauges (#24A, #80B, #83B, and #88B) as a function of the thickness.
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Experiments on rats, in which they are shown alternating black and white lines of different widths, suggest that the theoretical resolution is actually being achieved.
Thus, a 25-cm-diameter objective has a theoretical resolution of 0.45 second of arc and a 250-cm (100-inch) telescope has one of 0.045 second of arc.
The microtensiometer had a theoretical resolution of 0.02 mN m−1.
In this configuration, the theoretical resolution is 0.6 m in azimuth and 0.3 m in range.
The theoretical resolution limit for the distance estimates is 1.25 m.
From (27), the analytical expression for the azimuth theoretical resolution in CTSSAR can be obtained.
For LEEM (PEEM) the theoretical resolution is calculated to be ∼1.5 nm (∼4 nm).
Ray tracing is used to evaluate and optimize the theoretical resolution and transmission of the TGM.
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