. Carnegie Institution of Washington publication. A' = A+9-^ds 3s dn' = dn-\--—~ds 2s. dn\ ds Fig. 94. Fig. 95- When we introduce this and disregard quantities of the second order we get as expression of the outflow 3 A , , , .3dn , — dsdn+A —r-ds CO Ci or, when we separate the factor da = dnds which represents the area of the element, we get the expression of the outflow in the form (2A , . 1 2dn\ ,. Please note that these images are extracted from scanned page images that may have been digitally enhanced for readability - coloration and appearance of these illustrations may not perfectly res
. Carnegie Institution of Washington publication. A' = A+9-^ds 3s dn' = dn-\--—~ds 2s. dn\ ds Fig. 94. Fig. 95- When we introduce this and disregard quantities of the second order we get as expression of the outflow 3 A , , , .3dn , — dsdn+A —r-ds CO Ci or, when we separate the factor da = dnds which represents the area of the element, we get the expression of the outflow in the form (2A , . 1 2dn\ ,. Please note that these images are extracted from scanned page images that may have been digitally enhanced for readability - coloration and appearance of these illustrations may not perfectly resemble the original Carnegie Institution of Washington. Washington, Carnegie Institution of Washington
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