You know, it's really cool that you're designing sub-orbital spaceplanes. I bet you're surprised about how much capital you need to get your fledgling business off the ground. You've caught the eye of a big venture capital group in Raleigh, and they've agreed to provide funding if you can demonstrate that more than 20% of Class I and Il airports in the US could support an emergency landing of your craft. You make a list of requirements, and randomly select 200 US airports, 52 of which meet the specifications. An appropriate set of hypotheses to test whether the proportion of US airports that could support an emergency landing is more than 20%: (a) u (e) = (1) 40 (b) r (f) > G)47 (c) p (g) < (k) 0.26 (d) p (h) # (m) 0.20 Họ: I Select ] | Select ) | Select ) H: [Select ] | Select] ( Select ] The test statistic for this test is ( Select ] which yields a p-value of (Select | Based on this test, using a = 0.05, you should | Select ) Interpret this decision: you ISelect v have sufficient evidence to claim that more than 20% of US airports are equipped for an emergency landing of your craft. If your conclusion is incorrect, what type of error did you make? (Select]

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You know, it's really cool that you're designing sub-orbital spaceplanes. I bet you're surprised about
how much capital you need to get your fledgling business off the ground. You've caught the eye of a
big venture capital group in Raleigh, and they've agreed to provide funding if you can demonstrate
that more than 20% of Class I and Il airports in the US could support an emergency landing of your
craft. You make a list of requirements, and randomly select 200 US airports, 52 of which meet the
specifications.
An appropriate set of hypotheses to test whether the proportion of US airports that could support
an emergency landing is more than 20%:
(a) u
(b) 교
(c) P
(e) =
(i) 40
(f) >
G) 47
(g) <
(d) p
(k) 0.26
(h) #
(m) 0.20
[ Select
Họ:
| Select )
[ Select]
H,:
[ Select ]
| Select]
( Select )
The test statistic for this test is [ Select ]
, which yields ap-value of
[ Select )
Based on this test, using a =
0.05, you should
[ Select )
Interpret this decision: you [Select ]
v have sufficient evidence to claim that
more than 20% of US airports are equipped for an emergency landing of your craft.
If your conclusion is incorrect, what type of error did you make? (Select]
Transcribed Image Text:You know, it's really cool that you're designing sub-orbital spaceplanes. I bet you're surprised about how much capital you need to get your fledgling business off the ground. You've caught the eye of a big venture capital group in Raleigh, and they've agreed to provide funding if you can demonstrate that more than 20% of Class I and Il airports in the US could support an emergency landing of your craft. You make a list of requirements, and randomly select 200 US airports, 52 of which meet the specifications. An appropriate set of hypotheses to test whether the proportion of US airports that could support an emergency landing is more than 20%: (a) u (b) 교 (c) P (e) = (i) 40 (f) > G) 47 (g) < (d) p (k) 0.26 (h) # (m) 0.20 [ Select Họ: | Select ) [ Select] H,: [ Select ] | Select] ( Select ) The test statistic for this test is [ Select ] , which yields ap-value of [ Select ) Based on this test, using a = 0.05, you should [ Select ) Interpret this decision: you [Select ] v have sufficient evidence to claim that more than 20% of US airports are equipped for an emergency landing of your craft. If your conclusion is incorrect, what type of error did you make? (Select]
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