Answer:
(8+2) and (9+1) is the most fastest adding pair.
Step-by-step explanation:
It is easy to add zero digit number here it will be
We can club the two number or we can club two pair so as to form 10 in each of the pair
It will be (8+2) which gives 10
And (9+1) which gives 10
And it will very easy and fast to add 10 + 10
Rather than any other pair.
The minimum sample size required to estimate a population proportion or percentage is 306.
In statistics, a simple random sample is a subset of individuals chosen from a larger set in which a subset of individuals are chosen randomly, all with the same probability. It is a process of selecting a sample in a random way.
In order to determine the minimum sample size required to estimate a population proportion or percentage, we will use the following formula:
n = (z×p×q)/m²
where is the minimum sample size, z is the z-score corresponding to the desired confidence level, p is the population proportion, q is 1-p, and m is the desired margin of error.
In this case, the confidence level is 95%, so the corresponding z-score is 1.96. Since we don't know the population proportion, we will use the symbol p and q to represent it. Therefore, the formula becomes:
n = (1.96×p×q)/(0.04)²
To determine the minimum sample size, we need to determine the value of p and q. Since p + q = 1, if we set p to 0.5, then q will also be 0.5. Therefore, the minimum sample size is:
n = (1.96×0.5×0.5)/(0.04)² = 306.25
≈ 306
Therefore, the minimum sample size required to estimate a population proportion or percentage is 306.
Learn more about the random sample here:
brainly.com/question/12719656.
#SPJ2
Answer: 0.0727
Step-by-step explanation:
We can use the concept of probability:
In this case, we have 9 red marbles and 24 blue marbles, so the total number of marbles is 9 + 24 = 33.
Since there are 9 red marbles out of 33 total marbles, the probability of drawing a red marble on the first draw is 9/33.
There will be 8 red marbles left out of the remaining 32 marbles in the jar. So, the probability of drawing a second red marble after the first red marble is 8/32.
To find the probability of both marbles being red, we multiply the probabilities of the fractions together. (9/33) * (8/32).
Now let's round the answer to 4 decimal places!
(9/33) * (8/32) ≈ 0.0727
Therefore, the probability that both marbles drawn are red would be 0.0727. Sorry if it's nonsense, I'm just an average 6th Grader : D
The probability of pulling out 2 red marbles from the jar is approximately 0.0727.
To find the probability of pulling out two red marbles from the jar, we need to calculate the probability of pulling out a red marble on the first draw and then a red marble on the second draw.
The probability of pulling out a red marble on the first draw is 9/33, since there are 9 red marbles out of a total of 33 marbles. After the first marble is removed, there are now 8 red marbles left out of a total of 32 marbles. So, the probability of pulling out a red marble on the second draw is 8/32.
To find the probability of both events happening, we multiply the probabilities together: (9/33) * (8/32) = 0.0727 (rounded to 4 decimal places).
Learn more about Probability here:
#SPJ11