[10] Let X be a continuous RV with PDF fx(x) = { 90a + 0, x0 x < 0' where a > 0 and > 0 are parameters. (a) verify that fx(x)dx = 1. (b) Find the CDF, Fx(x), of X.
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Let X be a continuous RV with
where a > 0 and 0 > 0 are parameters.
- verify that f-∞ /x (x)dx = 1.
- Find the CDF, Fx (7), of X.
![[10] Let X be a continuous RV with PDF
fx(x) =
{
90a
+
0,
x0
x < 0'
where a > 0 and > 0 are parameters.
(a) verify that
fx(x)dx = 1.
(b) Find the CDF, Fx(x), of X.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff608d3a0-7ad6-4d87-98f1-9a851954d279%2Fc6c623d4-ad9f-4522-a621-13f124d2dbdd%2Fm5b451q_processed.jpeg&w=3840&q=75)

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- Let f (x) = 2xª + 2x³ + 2x² + 5x + 2. Fill in the missing coefficients for the derivative of f: f'(x) = xª + x³ +x² + X + %3DEvaluate the derivative (ri(t) × r2(t)) dt where r1(t) = and r2(t) =. (Use symbolic notation and fractions where needed. Give your answer in the form of comma separated list of x, y, z components.) * (r1(t) x r2(t)) = help (fractions)