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<br />. <br /> <br />. <br /> <br />6.4.5 <br /> <br />. <br /> <br />6.4.6 <br /> <br />. <br /> <br />6.5.1 <br /> <br />. <br /> <br />. <br /> <br />6.5.2 <br /> <br />6.5.3 <br /> <br />. <br /> <br />6.5.4 <br /> <br />. <br /> <br />6.5.5 <br /> <br />. <br /> <br />. <br /> <br />. <br /> <br />~L . . . . . . . . . . . . . . . . . . . . . . . . . . . <br /> <br />POWE\r spectra of (a) longitudinal (u'), (b) lateral <br /> <br />(v') and (c) vertical (w') wind components with respect <br /> <br />to the mean wind direction, as well as of (d) potential' <br /> <br />temperature (6 '), from data presented in Fig. 6.4.4 . . . <br /> <br />Gen~ral functional relation of the lateral and vertical <br /> <br />mea~ square particle displacement as a function of <br /> <br />diffusion time on 8 February 1978 <br /> <br />Aircraft sounding on 2 February 1980 case study. <br /> <br /> <br />Temferature and dewpoint are plotted on a skew-T log-P <br /> <br /> <br />dia~ram. Potential and equivalent potential tempera- <br /> <br /> <br />tur~ are a Iso shown ............... <br /> <br />Hodograph of winds for 2 February 1980 case study. . . . <br /> <br />A plan view of the K/A's fl ight track and the succes- <br /> <br />sive locations of the AgI seeding curtain, on 2 <br /> <br />February 1980 case study. . . . . . . . . . . <br /> <br />General functional relation of the longitudinal diffu- <br />sion plume size versus time, on 2 February 1980 case <br /> <br /> <br />st11!ClY . . . . . . . . . . . . . . . . . . . . . <br /> <br />A c!ompar ison be tween the ca lcula ted and observed seeded <br /> <br />plume dimensions on 2 February 1980 case study. . . . . <br /> <br />xi 11 <br /> <br />177 <br /> <br />178 <br /> <br />182 <br /> <br />184 <br /> <br />185 <br /> <br />187 <br /> <br />190 <br /> <br />191 <br />