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b) By considering results to obtain the stream function of a source of strength (m) placed at a point (c,o) combined...
b) By considering results to obtain the stream function of a source of strength (m) placed at a point (c,o) combined with a sink of strength (-m) placed at a point (-c,o) i.e. the source and sink combination are a distance 2c apart and lie on the x-axis. a source placed at the origin, obtain the stream function and use your (7 marks) b) By considering results to obtain the stream function of a source of strength (m) placed at...
b) By considering results to obtain the stream function of a source of strength (m) placed at a point (c,o) a source placed at the origin, obtain the stream function and use your combined with a sink of strength (-m) placed at a point (-c,o) i.e. the source and sink combination are a distance 2c apart and lie on the x-axis. (7 marks) b) By considering results to obtain the stream function of a source of strength (m) placed at...
b) By considering a source placed at the origin, obtain the stream function and use your results to obtain the stream function of a source of strength (m) placed at a point (c,o) combined with a sink of strength (-m) placed at a point (-c,o) i.e. the source and sink combination are a distance 2c apart and lie on the x-axis. (7 marks) b) By considering a source placed at the origin, obtain the stream function and use your results...
combination are a distance 2c apart and lie on the x-axis. (7 marks) A source and sink of equal strength 10 m /s placed at the points (2.5, 0) and (-2.5, 0) c) respectively. Show that lines of constant stream function are circles and hence obtain the radius and position of the centre on the circle whose stream function is 2 m2/s are (10 marks) Question 2 combination are a distance 2c apart and lie on the x-axis. (7 marks)...
A source of strength m, which by itself produces radial streamlines as indicated by the dashed arrows, is placed a distance L away from a vertical wall (occupying the yz-plane), at point S (x=L,y= 0). To compute the flow field in the presence of the wall, the method of images can be employed: A second source of strength m is placed a distance L from the wall on the other side, at S′ (x=−L,y= 0). The combined flow field of...
2. Water flows over a flat surface at 8 m/s, as shown in figure. A pump draws off water through a narrow slit at a volume rate of 0.2 m2/s per meter length of the slit. Assume that the fluid is incompressible and inviscid and can be represented by the combination of a uniform flow and a sink. a) Based on method of superposition, propose a general expression for stream function ψ velocity potential ф, and velocity components of v,...
Electric Field due to Two Point Charges 5 of 13 Two point charges are placed on the x axis (Figure 1)The first charge, gh 8.00 nC, is placed a distance 16.0 m from the origin charge, Q2 6.00 nC, is placed a distance 9.00 m from the origin along the negative x axis. Part A Find the electric field at the origin, point O Give the x and y components of the electric field as an ordered pair. Express your...
Point charges of -2.37 PC and +7.37 C are placed 0.745 m apart, with the negative charge at the origin and the positive charge on the +y-axis. (a) At what location, in meters, is the electric field due to these charges zero? Do not enter units with your answer. There is a support video for this class of problems. Add your answer
in newtons per coulomb to three significant figures Two point charges are placed on the x axis. (Figure 1) The first charge, q 8.00 nC, is placed a distance 16.0 Im from the origin along the positive x axis; the second charge, g2 -6.00 nC, is placed a distance 9.00 m from the origin along the negative x axis Hints EA,EA0,0.300 N/C Submit My Answers Give Up Correct Figure 1 of 1 Part B An unknown additional charge q3 is...
Point charges ql 50 uC and q2--25 uC are placed 1.0 m apart. What is the force on a third charge q3-40 uC placed midway between ql and q2? 53.9 N 88.7 N 107.9 N 25.6 N Question 4 (12.5 points) Point charges q1 q2 4.0x 106 C are fixed on the x-axis at x -3.0 m and x-3.0 m. What charge q must be placed at the origin so that the electric field vanishes at x 0. y -3.0...