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One of the most unique and efficient examine experts within the box of particle-fluid movement structures are assembled during this publication, that is an incredible and present reference quantity. The booklet specializes in tools of size and strategies for engineers
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Additional info for Instrumentation for Fluid Particle Flow
561 1900. 5 > 1 reference( s) [4. 18]. 25] [4. 3] [4. 3] [4. 28] [4. 29] footnotes 15 16 14 a - I have given the best wavelength available (see tables in Part II). The measurement accuracy is indicated by the number of significant figures. b- Most of the molecule codes are self-evident. They are listed in Chap. 10. 31]; see text) except where noted otherwise. 5, owing to the lack of better data. All values greater than 2 mW were rounded to the nearest m W. footnotes 1 Most of the power levels reported for these lines are greater than 100 mW.
21 Obtained with a waveguide pump laser, which improved the absorption coincidence. 42] obtained 16 mW submm output. 306 pm line. The power on that line was 146 mW. 1 just because the measurements have not yet been made, or have not yet been reported, or because no-one has attempted to optimise on those lines. Absolute power measurements are fairly difficult to perform in the (sub)mm part of the spectrum, because of uncertainties in the beam propagation, because of diffraction effects, and because of poor matching to detectors, which results in standing-wave effects and unterminated reflectances.
A. Semet: Rev. Sci. Instrum. A. W. S. B. C. Macfarlane: Appl. Phys. Lett. B. C. A. W. S. 28 G. Graner, J-C. Deroche: "Far-Infrared Laser Lines Obtained by Optical Pumping of the CD3Cl molecule", in Reviews of Infrared and Millimeter Waves, Vol. 2, ed. J. Button, M. Inguscio, F. 29 G. Duxbury: "Submillimeter Laser Lines in 1,1 Diftuoroethylene, CF2 CH2", in Reviews of Infrared and Millimeter Waves, Vol. 2, ed. J. Button, M. Inguscio, F. T. B. D. Reel: IEEE J. B. T. B. Dyson: Int. J. J. J. H. Ngai: Opt.