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Static and Dynamic Response of a Design of Differential ... - aerade

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&thod 2 Alternatively we may use equation 8 to correct for 9 taking<br />

s<br />

#*tan” (.$I) = 53-J', <strong>and</strong> the first appruxkmtion to e(z25.8').<br />

ermr t se0 e l-<br />

L<br />

= 0.05<br />

sin2e(cos4$ + sin4$)<br />

Hence corrected f = 1.77, which in conjunction with<br />

Ppit<br />

s ps<br />

gives from fig.9(b)<br />

0 = 25.1'<br />

ApForoximation from functional form<br />

Also<br />

The approximation <strong>of</strong> equation 9 gives for 8, wing<br />

e c<br />

31 AQ<br />

Ps<br />

0.22 f<br />

5 =P,it+ 0 s<br />

ps Ps a-g<br />

= 3.03<br />

:. From fig.8, or tables, Id = I.400<br />

W.ZOTB.C.P.UIY.K3 - Printed in Great Brstai,,<br />

ps<br />

- 36 -<br />

i.e. 9 = 25.6<br />

2<br />

J<br />

:<br />

- I<br />

from equation 12<br />

= 2.70<br />

L

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