Answer:
1. E(Y) = 50.54°F
2. SD(Y) = 11.34°F
Step-by-step explanation:
We are given that The daily high temperature X in degrees Celsius in Montreal during April has expected value E(X) = 10.3°C with a standard deviation SD(X) = 3.5°C.
The conversion of X into degrees Fahrenheit Y is Y = (9/5)X + 32.
(1) Y = (9/5)X + 32
E(Y) = E((9/5)X + 32) = E((9/5)X) + E(32)
= (9/5) * E(X) + 32 { expectation of constant is constant}
= (9/5) * 10.3 + 32 = 50.54
Therefore, E(Y), the expected daily high in Montreal during April in degrees Fahrenheit is 50.54°F .
(2) Y = (9/5)X + 32
SD(Y) = SD((9/5)X + 32) = SD((9/5)X) + SD(32)
= * SD(X) + 0 { standard deviation of constant is zero}
= * 3.5 = 11.34°F
Therefore, SD(Y), the standard deviation of the daily high temperature in Montreal during April in degrees Fahrenheit is 11.34°F .
Answer:
40 weeks
Step-by-step explanation:
We must find the relationship between weeks and years. Given that 52 weeks make a year, it means that 3/4 of the year would be equivalent to
= 3/4 * 52 weeks
= 39 weeks
Since we know that Shanna attends school for 1 week longer than 3/4 of the year, it means she added school for 1 week more than 39 weeks. The number of weeks she attended school is thus
= 39 +1
= 40 weeks
Answer:
2
1 - -
3
Step-by-step explanation:
gogiueueudkdkdkd
Answer:
1 2/3
Step-by-step explanation:
Answer:9+w
Step-by-step explanation:
Answer: Use PEMDAS. 11^2 (11 times 11) = 121.
2^2 (2 times 2) = 4
121 x 4 = 484
Step-by-step explanation:
Using the Pemdas method, you can solve the equation.