If m(x) = E[I(x)] is a composite function, then and I'(x) exist. O m'(x) = E[I(x)]I'(x) ○ m' (x) = E' [I'(x)]I'(x) O m'(x) = E' [I'(x)] Om'(x) =E[I'(x)] I'(x) O m'(x) = E' [I(x)]I'(x) , provided that E' [I(x)]
If m(x) = E[I(x)] is a composite function, then and I'(x) exist. O m'(x) = E[I(x)]I'(x) ○ m' (x) = E' [I'(x)]I'(x) O m'(x) = E' [I'(x)] Om'(x) =E[I'(x)] I'(x) O m'(x) = E' [I(x)]I'(x) , provided that E' [I(x)]
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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![If m(x) = E[I(x)] is a composite function, then
and I'(x) exist.
O m'(x) = E[I(x)]I'(x)
○ m' (x) = E' [I'(x)]I'(x)
O m'(x) = E' [I'(x)]
Om'(x) =E[I'(x)] I'(x)
O m'(x) = E' [I(x)]I'(x)
, provided that E' [I(x)]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F553f4f5a-ebc3-465d-ae10-30fadeaa7064%2Fa3057f8d-8790-435d-94c2-3c4e7ff89e5d%2F3tprxi_processed.png&w=3840&q=75)
Transcribed Image Text:If m(x) = E[I(x)] is a composite function, then
and I'(x) exist.
O m'(x) = E[I(x)]I'(x)
○ m' (x) = E' [I'(x)]I'(x)
O m'(x) = E' [I'(x)]
Om'(x) =E[I'(x)] I'(x)
O m'(x) = E' [I(x)]I'(x)
, provided that E' [I(x)]
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