WGU C955 Applied Probability and Statistics |
Actual Questions and Answers Latest Updated
(Graded A+)
Correct 132
Incorrect
C955 Applied Probability and Statistics
, Common Metric Conversions Probability - Disjoint Events
Greatest Common Factor (GCF) Prime Factorization
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2 of 132
Definition
Potential events are represented in a diagram with a branch for each
possible outcome of the events. The probability of each outcome is
indicated on the appropriate branch, and these values can be used to
calculate the overall impact of risk occurrence in a project.
Probabilities are placed on the corresponding branch.
Probabilities of each outcome are found by multiplying along the path.
Probabilities of events that include more than one outcome are found
by adding the products from each path.
Law of total probability. Sum of all probabilites = 1
Give this one a try later!
Probability Trees Probability - Sample Space
, No Correlation Probability - Complement
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3 of 132
Definition
Average, extreme values greatly influence the mean in the direction of
the skew
Give this one a try later!
No Correlation Deviation
Mean Median
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4 of 132
Definition
y−y1=m(x−x1) ,
where m is the slope of the line and (x1,y1) are the coordinates of a
known point.
, A line has a slope of 5 and passes through the point (3,7) . What is the
equation of the line in slope-intercept form?
To find the equation, we start with the point-slope formula:
y−y1=m(x−x1)
Next, we fill in the information that is known. Remember, m is the slope
of the line and (x1,y1) are the coordinates of a known point (3,7)
y−y1=m(x−x1)y−7=5(x−3)
Finally, we can use algebra to manipulate the equation into slope-
intercept form:
y−7=5(x−3)y−7=5x−15y=5x−8
As you can see, starting with just a point and the slope of a line, we can
express its linear equation in slope-intercept form.
Give this one a try later!
Point-Slope Form Probability Trees
Multiplying Fractions Voluntary Sample
Don't know?
Actual Questions and Answers Latest Updated
(Graded A+)
Correct 132
Incorrect
C955 Applied Probability and Statistics
, Common Metric Conversions Probability - Disjoint Events
Greatest Common Factor (GCF) Prime Factorization
Don't know?
2 of 132
Definition
Potential events are represented in a diagram with a branch for each
possible outcome of the events. The probability of each outcome is
indicated on the appropriate branch, and these values can be used to
calculate the overall impact of risk occurrence in a project.
Probabilities are placed on the corresponding branch.
Probabilities of each outcome are found by multiplying along the path.
Probabilities of events that include more than one outcome are found
by adding the products from each path.
Law of total probability. Sum of all probabilites = 1
Give this one a try later!
Probability Trees Probability - Sample Space
, No Correlation Probability - Complement
Don't know?
3 of 132
Definition
Average, extreme values greatly influence the mean in the direction of
the skew
Give this one a try later!
No Correlation Deviation
Mean Median
Don't know?
4 of 132
Definition
y−y1=m(x−x1) ,
where m is the slope of the line and (x1,y1) are the coordinates of a
known point.
, A line has a slope of 5 and passes through the point (3,7) . What is the
equation of the line in slope-intercept form?
To find the equation, we start with the point-slope formula:
y−y1=m(x−x1)
Next, we fill in the information that is known. Remember, m is the slope
of the line and (x1,y1) are the coordinates of a known point (3,7)
y−y1=m(x−x1)y−7=5(x−3)
Finally, we can use algebra to manipulate the equation into slope-
intercept form:
y−7=5(x−3)y−7=5x−15y=5x−8
As you can see, starting with just a point and the slope of a line, we can
express its linear equation in slope-intercept form.
Give this one a try later!
Point-Slope Form Probability Trees
Multiplying Fractions Voluntary Sample
Don't know?