Answer:
( 2/9 )
Step-by-step explanation:
Okay, so since the events A and B are independent, the probability that both of them do not occur is the product of their individual probabilities of not occurring.
The probability of event A not occurring, denoted as ( P(A') ), is equal to 1 minus the probability of A occurring. Similarly, the probability of event B not occurring, denoted as ( P(B') ), is equal to 1 minus the probability of B occurring.
So, ( P(A') = 1 - P(A) = 1 - 1/3 = 2/3 ) and ( P(B') = 1 - P(B) = 1 - 2/3 = 1/3 ).
Since A and B are independent, the probability that both A and B do not occur is simply the product of their individual probabilities of not occurring:
[ P(N = 0) = P(A' cap B') = P(A')P(B') = (2/3) times (1/3) = 2/9 ]
So, the probability that no events occur is ( 2/9 ).
Hope this helps! :)
f(x)= -99.4x + 198.8
f(1) = -99.4*1 + 198.8 = 99.4
f(2) = -99.4*2 + 198.8 = 0
f(3) = -99.4*3 + 198.8 = -99.4
f(4) = -99.4*4 + 198.8 = -198.8
Answer:
Which is a recursive formula for the sequence 99.4, 0, –99.4, –198.8, where f(1) = 99.4?
The answer will be : f(n + 1) = f(n) – 99.4, n ≥ 1
$984.58
b.
$4,280.00
c.
$11,815.00
d.
$14,417.92
Answer:
The ratio of beaks to wings in a flock of birds is 1:2.
Step-by-step explanation:
Consider the provided information.
Beaks are the hand and pointed structure that sticks out from a bird's face.
The number of beaks of a bird is one and the number of wings is two.
We need to find the ratio of beaks to wings in a flock of birds
Thus the ratio of beaks to wings in a flock of birds is 1:2.
This shows that there's one beak for each pair of wings.
x2 + 2x – 2 = 0