four different conflicts you have encountered.  These conflicts can be work related.  The presentation will consist of 5 slides and must have at least 1 academic reference for each slide.  Neither textbooks nor Wikipedia can be used as references. The presentation will follow APA format in a number 12 font.

For each slide, you are to only use bullet points and or pictures, diagrams, charts etc.  In the notes section of each slide, you are to write 85-100 words explaining the slide. You should use in-text citations and references.  These must be in APA style.

name on each slide.  

 
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How do I solve this?

This question has part a through d and, not so sure how to go about answering.

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FOUR DEC1. You are given the following benchmark spot rates: (Total 20 points)MaturitySpotrate2.90%N3.20%3.60%4.20%a. Compute the forward rate between years 1 and 2. (5 points)Inb. Compute the forward rate between years 1 and 3. (5 points)

 
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Four charges are placed at the four corners of a square of side 15 cm. The charges on the upper left and right corners are +3 μC and -6 μC respectively. The charges on the lower left and right corners are -2.4 μC and -9 μC respectively. The net electric force on -9 μC charge is:

18 N, 750 below the positive x-axis

18 N, 750 below the negative x- axis

18 N, 750 above the negative x- axis

18 N, 750 above the positive x- axis

 
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Four buses carrying 165 high school students arrive to Montreal. The buses carry, respectively, 38, 44, 33, and 50 students. One of the studetns is randomly selected. Let X denote the number of students that were on the bus carrying this randomly selected student. One of the 4 bus drivers is also randomly selected. Let Y denote the number of students on his bus. Compute the expectations and variances of X and Y:

 
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Four buses carrying 160 high school students arrive to Montreal. The buses carry, respectively, 34, 48, 29, and 49 students. One of the studetns is randomly selected. Let X denote the number of students that were on the bus carrying this randomly selected student. One of the 4 bus drivers is also randomly selected. Let Y denote the number of students on his bus. Compute the expectations and variances of X and Y

 
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Four buses carrying 156 high school students arrive to Montreal. The buses carry, respectively, 39, 48, 28, and 41 students. One of the students is randomly selected. Let X denote the number of students that were on the bus carrying this randomly selected student. One of the 4 bus drivers is also randomly selected. Let Y denote the number of students on his bus. Compute the expectations of X and Y:E(X)=

 
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Four buses carrying 151 high school students arrive to Montreal. The buses carry, respectively, 39, 47, 29, and 36 students. One of the students is randomly selected. Let X denote the number of students that were on the bus carrying this randomly selected student. One of the 4 bus drivers is also randomly selected. Let Y denote the number of students on his bus. Compute the expectations and variances of X and Y:

 
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Four Oaks Golf Inc. was organized on July 1, 2010. Quarterly financial statements are prepared. The trial balance and adjusted trial balance on September 30 are shown here.FOUR OAKS GOLF INC.Trial BalanceSeptember 30, 2010

 
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Four long, parallel conductors carry equal currents of I = 2.50 A. The figure below shows an end view of the conductors. The direction of the current is into the screen at points A and B (indicated by the crosses) and out of the screen at C and D (indicated by the dots). Calculate the magnitude and direction of the magnetic field at point P, located at the center of the square with edge of length 0.200 m.

 
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Four strain gauges are bonded onto a cantilever as shown in Figure 8.20(a). Given that thegauges are placed halfway along the cantilever and the cantilever is subject to a downwardforce of 0.5 N, use the data given below to calculate the resistance of each strain gauge:Cantilever data Strain gauge dataLength l = 25 cm Gauge factor G = 2.1Width w = 6 cm Unstrained resistance R0 = 120 Thickness t = 3 mmYoungs modulus E = 70 109 Pa

 
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