The standard error is calculated as the standard deviation divided by the square root of the sample size. For a population with a standard deviation of 6 and a sample size of 50, the standard error is 6 / sqrt(50).
The standard error can be defined as the standard deviation divided by the square root of the number of samples. It helps to estimate the variability in the population. In this case, the mean is 64, the standard deviation is 6, and the sample size is 50. The equation to calculate the standard error is:
Plugging in the values given in the question, we get:
. After performing the division, you will get the standard error of the mean which tells you how far your sample mean could be from the true population mean.
#SPJ12
please help me with this-
Answer:
0.03
Step-by-step explanation:
8x=0.24
x=0.03
Answer:
59
Step-by-step explanation:
700 divided by 12 is 58.3333333333333 (the three is a repeating decimal btw) but u cant sell a fraction of a cap so it is 59
Answer:
59
Step-by-step explanation:
700 divided by 12 is 58.3 repeating. You can't spell a fraction of a cap, therefore you must sell 59. This meets the goal of at least 700 caps sold in total.
1. 2x + 6 = 8
2. 2x = 2
3. x = 1
In which step did Sarah use the distributive property?
1
2
3
Answer:
Step 1
Step-by-step explanation:
2(x + 3) = 8
1. 2x + 6 = 8
2. 2x = 2
3. x = 1
In step 1, she distributed the 2 to the x and 3 by multiplying them and getting 2x and 6.
(x + 1)(2x^2 + 3x - 1) : Can be solved in multiple ways but easiest for me :P
x (2x^2 + 3x - 1) + 1(2x^2 + 3x - 1)
(2x^3 + 3x^2 - x) + (2x^2 + 3x - 1)
2x^3 + 5x^2 + 2x - 1