6. Rewrite each of these expressions following the instructions for the previous problem. a) √√ 2y²z b) √√²

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Chapter2: Second-order Linear Odes
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i need Q6 part C D solution

5. For this problem and the next one, rewrite each expression in the following ways:
i. so it does not contain any roots,
ii. so that it is simplified and does not contain any roots or negative exponents.
iii. so that, in addition to the above, there are no fractional exponents in the denom-
inator.
For example, given
√√2x²y³
you can rewrite the roots using fractional exponents as
5y
√2²¹√²-(2-²)+(²).
which is an answer for part (i). To answer part (ii), we note that we have two
multiplication expressions raised to powers, so we can simplify by multiplying the
Transcribed Image Text:5. For this problem and the next one, rewrite each expression in the following ways: i. so it does not contain any roots, ii. so that it is simplified and does not contain any roots or negative exponents. iii. so that, in addition to the above, there are no fractional exponents in the denom- inator. For example, given √√2x²y³ you can rewrite the roots using fractional exponents as 5y √2²¹√²-(2-²)+(²). which is an answer for part (i). To answer part (ii), we note that we have two multiplication expressions raised to powers, so we can simplify by multiplying the
1
6. Rewrite each of these expressions following the instructions for the previous problem.
y
a)
b)
c)
d)
a/2y²z
x
37x²z -2yz
xy
-1 (x-y) s/yz²
x²y²
t²x
Transcribed Image Text:1 6. Rewrite each of these expressions following the instructions for the previous problem. y a) b) c) d) a/2y²z x 37x²z -2yz xy -1 (x-y) s/yz² x²y² t²x
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