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Published byCameron Anthony Modified over 9 years ago
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Figure 1. Vertical cross section of temperature ( = 2 o C) in the vicinity of a front. The horizontal distance between each tick mark is 44 kilometers. ++
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Figure 2. Vertical cross section of potential temperature ( = 2 K) in the vicinity of a front. The horizontal distance between each tick mark is 44 kilometers. ++
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Figure 3. Vertical cross section of geopotential height ( = 100 m) in the vicinity of a front. The horizontal distance between each tick mark is 44 kilometers. ++
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Figure 4. Vertical cross section of pressure ( = 25 hPa) in the vicinity of a front. The horizontal distance between each tick mark is 44 kilometers. ++
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Figure 1. Vertical cross section of temperature ( = 2 o C) in the vicinity of a front. The horizontal distance between each tick mark is 44 kilometers. ++ +=0
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Figure 1. Vertical cross section of temperature ( = 2 o C) in the vicinity of a front. The horizontal distance between each tick mark is 44 kilometers. ++ Heating 1 o C every four hours No heating
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Figure 1. Vertical cross section of temperature ( = 2 o C) in the vicinity of a front. The horizontal distance between each tick mark is 44 kilometers. ++ LHR rising motion sinking motion
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Figure 1. Vertical cross section of temperature ( = 2 o C) in the vicinity of a front. The horizontal distance between each tick mark is 44 kilometers. ++ sinking motion surface divergence below the sinking air parcel at 1000 m elevation is 1x10 -5 s -1
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Figure 2. Vertical cross section of potential temperature ( = 2 K) in the vicinity of a front. The horizontal distance between each tick mark is 44 kilometers. + + + +
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Figure 3. Vertical cross section of geopotential height ( = 100 m) in the vicinity of a front. The horizontal distance between each tick mark is 44 kilometers. + / z = [(272-270.5) K]/[(1080-810) m] = 5.56 x 10 -3 K m -1 + + +
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