'3.98 Consider the negative binomial distribution given in Definition 3.9. p(y) a Show that if y > r + 1, |q. This establishes a recursive relation- P(y – 1) ship between successive negative binomial probabilities, because p(y) = p(y – 1) x |q. > lifty b Show that p(y) r - 9 Similarly, p(y) < 1 if %3D p(y – 1) r - 9 y > 1- 9 c Apply the result in part (b) for the case r = 7, p = .5 to determine the values of y for which p(y) > p(y – 1). 1-9 Ру — 1)
'3.98 Consider the negative binomial distribution given in Definition 3.9. p(y) a Show that if y > r + 1, |q. This establishes a recursive relation- P(y – 1) ship between successive negative binomial probabilities, because p(y) = p(y – 1) x |q. > lifty b Show that p(y) r - 9 Similarly, p(y) < 1 if %3D p(y – 1) r - 9 y > 1- 9 c Apply the result in part (b) for the case r = 7, p = .5 to determine the values of y for which p(y) > p(y – 1). 1-9 Ру — 1)
MATLAB: An Introduction with Applications
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
Transcribed Image Text:*3.98 Consider the negative binomial distribution given in Definition 3.9.
p(y)
P(y – 1)
q. This establishes a recursive relation-
a Show that if y > r + 1,
ship between successive negative binomial probabilities, because p(y) = p(y – 1) x
q.
V -r
p(y)
p(y – 1)
p(y)
p(y – 1)
b Show that
q > 1 if y <
Similarly,
1- 9
< 1 if
%3D
y >
c Apply the result in part (b) for the case r = 7, p = .5 to determine the values of y for
which p(y) > p(y – 1).
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