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Novay_Z [31]
1 year ago
13

Which of the following provides essential project data including objective performance status, cost impact of known problems, id

entification of emerging problems, possible sources of problems, and schedule deviations from the contract plan?
A. Integrated Master Schedule (IMS)
B. Integrated Program Management Report (IPMR)
C. Cost/Benefit AnalysisWork Breakdown Structure (WBS)
D. Mark for follow up
Business
1 answer:
mr_godi [17]1 year ago
7 0

Answer:

The correct answer is letter "B": Integrated Program Management Report (IPMR).

Explanation:

The Integrated Program Management Report (<em>IPMR</em>) is a legally authorized report containing performance details extracted from the internal Earned Value Management System of the contractor. The IPMR provides an extract on the advance of the agreement including potential problems, costs, and change in schedules.

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In the economy of Panicia, the monetary base is $1,000. People hold a third of their money in the form of currency (and thus two
Angelina_Jolie [31]

Answer:

(a) rr: 1/3, cr: 0.5, m:1.8 M: 1800

(b) 1500

(c) 200

8 0
1 year ago
Samantha’s database contains a table of student scores and another table with student schedules. How can Samantha use this infor
Ugo [173]
<span>The correct answer is She can use a complex query linking student scores by name and available study period, then sort the data and group it. By doing this, she would have used both tables to make a decision on how to group the students for a review class.</span>
8 0
1 year ago
Read 2 more answers
Show that if the contribution to profit for trains is between $1.50 and $3, the current basis remains optimal. If the contributi
Dmitriy789 [7]

Answer:

210

Explanation:

Let us consider that x is the number of soldiers produced each week and y is number of trains produced each week.

Also, weekly revenues and costs can be expressed in terms of the decision variables x and y.

Then,

Hence the profit which we want to maximize is given by,

Now the constraints are given as,

Finishing Constraint:

Each week, no more than 100 hours of finishing time may be used.

Carpentry Constraint:

Each week, no more than 80 hours of carpentry time may be used.

Demand Constraint:

Because of limited demand, at most 40 soldiers should be produced each week.

Combining the sign restrictions and with the objective function  and constraints,and yield the following optimization model:

Such that,

First convert the given inequalities into equalities:

From equation (1):

If x=0 in equation (1) then (0,100)

If y=0 in equation (1) then (50,0)

From equation (2):

If x=0 in equation (2) then (0,80)

If y=0 in equation (2) then (80,0)

From equation (3):

Equation (3) is the line passing through the point x=40.

Therefore, the given LPP has a feasible solution first image

The optimum solution for the given LPP is obtained as follows in the second image

The optimal solution to this problem is,

And the optimum values are  .

Let c be the contribution to profit by each train. We need to find the values of c for which the current, basis remain optimal. Currently c is 2, and each iso-profit line has the form

3x +  2y = constant

y = 3x/2 +constant/ 2

And so, each iso-profit line has a slope of  .

From the graph we can see that if a change in c causes the isoprofit lines to be flatter than the carpentry constraint, then the optimal solution will change from the current optimal solution to a new optimal solution, If the profit for each train is c, the slope of each isoprofit line will be.

-3/c

Because the slope of the carpentry constraint is –1, the isoprofit lines will be flatter than the carpentry constraint.

If,

-3/c<-1

c >3

and the current basis will no longer be optimal. The new optimal solution will be point A of the graph.

If the is oprofit lines are steeper than the finishing constraint, then the optimal solution will change from point B to point C. The slope of the finishing constraint is –2.

If,

-3/c < -2 or

C < 1.5

Then the current basis is no longer optimal and point C,(40,20), will be optimal. Hence when the contribution to the profit for trains is between $1.50 and $3, the current basis remains optimal.

Again, consider the contribution to the profit for trains is $2.50, then the decision variables remain the same since the contribution to the profit for trains is between $1.50 and $3. And the optimal solution is given by,

z = 3× (20) + 2.5 × (60)

= 60 + 150

= 210

5 0
1 year ago
Suire Corporation is considering dropping product D14E. Data from the company's accounting system appear below: Sales $ 600,000
atroni [7]

Answer:

$127,000

Explanation:

Suire Corporation Net operating income

Sales $ 600,000

Variable Costs $ 241,000

Contribution Margin $ 359,000

Fixed Expenses $232,000

Net Operating Income $127,000

6 0
1 year ago
International Exchange has three divisions: A, B, and C. Division A has the least risk and Division C has the most risk. The fir
Vsevolod [243]

Answer:

A, B, and C. Division A has the least risk and Division C has the most risk.

Explanation:

the firm has an aftertax cost of debt of 6.1 percent and a cost of equity of 14.3 percent. The firm is financed with 35 percent debt and 65 percent equity.  hope this helps you :)

6 0
1 year ago
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