Answer:
The probability that the selected ball is not blue is .
The probability that the selected ball is green is .
Step-by-step explanation:
The question is:
There are 10 brown balls, 5 blue balls and 15 green balls in a basket. If one is drawn at random, what is the probability that it is not blue? What is the probability that it is green?
Solution:
The probability of an event E is the ratio of the favorable number of outcomes to the total number of outcomes.
The probability of the given event not taking place is known as the complement of that event.
Complement of the event E is,
1 – P (E)
The number of different color balls are as follows:
Brown = n (Br) = 10
Blue = n (Bu) = 5
Green = n (G) = 15
Total = N = 30
Compute the probability of selecting a blue ball as follows:
Compute the probability of not selecting a blue ball as follows:
Thus, the probability that the selected ball is not blue is .
Compute the probability of selecting a green ball as follows:
Thus, the probability that the selected ball is green is .
Answer:
boardgamegeek.com/boardgame/245655/kings-dilemma
Step-by-step explanation:
(0, −5)
(3, −1)
(1, −2)
(0, 1)
(−1, 1)
Answer:
(0,-5) , (1,-2) , (0,1) and (-1,1)
Step-by-step explanation:
-2x + y ≥ -4
y ≥ 2x - 4
Taking a point (0,-5):
-5 ≥ 0 - 4 , 5 ≥ -4
This situation is true.
Taking a point (3,-1):
-1 ≥ 2(3) - 4 , -1 ≥ 2
This situation is not true.
Taking a situation (1,-2):
-2 ≥ 2(1) - 4 , -2 ≥ -2
This situation is true.
Taking a point (0,1):
1 ≥ 0 - 4 , 1 ≥ -4
This situation is true.
Taking a point (-1,1):
1 ≥ 2(-1) - 4 , 1 ≥ -6
This situation is true.
The correct answers are
(−1, −1)
(5, −12)
(0, 1)
Have a nice day!
Answer:
The calculated test statistic is 2.578
Step-by-step explanation:
We are given the following in the question:
Population mean, μ = 2,000 calories/day
Sample mean, = 2105
Sample size, n = 50
Alpha, α = 0.05
Sample standard deviation, s = 288
First, we design the null and the alternate hypothesis
We use one-tailed t test to perform this hypothesis.
Formula:
Putting all the values, we have
Thus, the calculated test statistic is 2.578
Answer:
Test statistics = 2.578
Step-by-step explanation:
We are given that the director of student health at a large university was concerned that students at his school were consuming too many calories each day. For a certain population of college-age students, it is recommended to consume around 2,000 calories/day.
Also, given Null Hypothesis, : = 2000
Alternate Hypothesis, : > 2000
The test statistics used here will be;
T.S. = ~
where, X bar = sample mean = 2105 calories/day
s = sample standard deviation = 288 calories/day
n = sample of students = 50
So, test statistics = ~
= 2.578
Therefore, the appropriate test statistic for this situation is 2.578 .
The maximum 60 bracelets, Tara can have with 15 beads in each bracelet.
The division in mathematics is one kind of operation. In this process, we split the expressions or numbers into same number of parts.
Given, Tara has a box of 908 beads.
And one bracelet has 15 beads as per Tara's wish.
To find the number of bracelets,
we divide the total beads to beads in one bracelet.
That means,
Number of bracelets = 908 / 15= 60 (rounded)
Therefore, the maximum 60 bracelets, Tara can have with 15 beads in each bracelet.
To learn more about the division;
#SPJ2
Answer:
60 bracelets
Step-by-step explanation:
908 / 15 = 60.5
you can not have half a bead on the bracelets so round down because you only have 908 beads and do not have more.