Answer:
5x + 7
Step-by-step explanation:
Add 3x and 2 x
Answer:
41101.750 to 43898.250
Step-by-step explanation:
Using this formula X ± Z (s/√n)
Where
X = 42500 --------------------------Mean
S = 6800----------------------------- Standard Deviation
n = 64 ----------------------------------Number of observation
Z = 1.645 ------------------------------The chosen Z-value from the confidence table below
Confidence Interval Z
80%. 1.282
85% 1.440
90%. 1.645
95%. 1.960
99%. 2.576
99.5%. 2.807
99.9%. 3.291
Substituting these values in the formula
Confidence Interval (CI) = 42500 ± 1.645(6800/√64)
CI = 42500 ± 1.645(6800/8)
CI = 42500 ± 1.645(850)
CI = 42500 ± 1398.25
CI = 42500+1398.25 ~. 42500-1398.25
CI = 43898.25 ~ 41101.75
In other words the confidence interval is from 41101.750 to 43898.250
To find a 90% confidence interval for the mean starting salary, use the formula CI = sample mean ± (Z * sample standard deviation / √n).
To find a 90% confidence interval for the mean starting salary, we will use the formula:
CI = sample mean ± (Z * sample standard deviation / √n)
Given that the sample mean is $42,500, the sample standard deviation is $6,800, and the number of college graduates is 64, we can substitute these values into the formula to calculate the confidence interval. The lower-bound is $41,101.87 and the upper-bound is $43,898.13.
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Answer:
Iteration 1:
Iteration 2:
Step-by-step explanation:
Formula for Newton's method is,
Given the initial guess as , therefore value of n = 1.
Also, .
Differentiating with respect to x,
Applying difference rule of derivative,
Applying power rule and constant rule of derivative,
Substituting the value,
Calculating the value of and
Calculating
Calculating ,
Substituting the value,
Therefore value after second iteration is
Now use as the next value to calculate second iteration. Here n = 2
Therefore,
Calculating the value of and
Calculating
Calculating ,
Substituting the value,
Therefore value after second iteration is
To calculate two iterations of Newton's Method, use the formula xn+1 = xn - f(xn)/f'(xn). Given an initial guess of x1 = 1.6 and the function f(x) = x9 - 9, calculate f(xn) and f'(xn) at x1 and then use the formula to find x2 and x3.
To calculate two iterations of Newton's Method, we need to use the formula:
xn+1 = xn - f(xn)/f'(xn)
Given an initial guess of x1 = 1.6 and the function f(x) = x9 - 9, we can proceed as follows:
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0.63
_____
-0.7
Answer:
- 0.9
Step-by-step explanation:
your welcome.what is quotient?a result obtained by dividing one quantity by another.
Answer:
True
Step-by-step explanation:
We assume that is true for the nth case and prove it for the n+1 case
and show that it is true for the case when n=1