Use the data in the following table, which lists drive-thru order accuracy at popular fast food chains. Assume that orders are randomly selected from those included in the table, Drive-thru Restaurant A C Order Accurate 335 37 272 55 234 32 145 18 Order Not Accurate If one order is selected, find the probability of getting an order from Restaurant A or an order that is accurate. Are the events of selecting an order from Restaurant A and selecting an accurate order disjoint events? ... The probability of getting an order from Restaurant A or an order that is accurate is (Round to three decimal places as needed.)

Advanced Engineering Mathematics
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ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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Use the data in the following table, which lists drive-thru order accuracy at popular fast food chains. Assume that orders are randomly selected from those included
in the table,
Drive-thru Restaurant e
A
C
Order Accurate
Order Not Accurate
335
37
272
55
234
32
145
18
If one order is selected, find the probability of getting an order from Restaurant A or an order that is accurate. Are the events of selecting an order from Restaurant A
and selecting an accurate order disjoint events?
The probability of getting an order from Restaurant A or an order that is accurate is
(Round to three decimal places as needed.)
Transcribed Image Text:Use the data in the following table, which lists drive-thru order accuracy at popular fast food chains. Assume that orders are randomly selected from those included in the table, Drive-thru Restaurant e A C Order Accurate Order Not Accurate 335 37 272 55 234 32 145 18 If one order is selected, find the probability of getting an order from Restaurant A or an order that is accurate. Are the events of selecting an order from Restaurant A and selecting an accurate order disjoint events? The probability of getting an order from Restaurant A or an order that is accurate is (Round to three decimal places as needed.)
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