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A line of charge with uniform density extends between z = -L/2 and z = L/2 along the z-axis. Apply Coulomb's law to obtain an expression for the electric field at any point P (r, 0) on the x-y plane. Show that your result reduces to the expression given by Eq. (4.33) as the length L is extended to infinity.
1.Explain how access privileges affect members of the derived class and objects created from them. 2. For a multifile project that contains just one class, list and describe each of the files
Perform experiments using your circuit design. Using your digital scope, plot (and submit) input voltage and output voltage from your circuit design. Try to vary the filter portion (R, L, C) of your circuit and plot (and submit) output voltages.
a filamentary conductor carrying current I in the z direction extends along the entire z axis. At z=0 it connects to a copper sheet that fills the x>0 and y>0 quadrant of the xy-plane. Set up Biot-Savart law and find H everywhere on z axis.
a)How many coulombs of charge are stored in the battery when fully charged?
The vaultdoor will be equipped with a vibration sensor that will cause aswitch to close it the vault is disturbed, ans a switch will bemounted on the bank door in such a way that i will close wheneverthe bank door is opened.
Design a combination circuit that accepts a 4bit number and generates a 3 bit binary output that approximatesthe square root of the number. For example, if the square is 3.5 orlarger, give the result of 4. if the square root is
An absolute optical rotary encoder has five tracks. How many bits is the output, and what is the resolution in degrees per state (that is, degrees per LSB)
the donor concentration in a silicon sample at 300k is nd 1.2 x 1015 cm-3. 1 x 1016 cm-3 acceptor atoms are added to
1. Obtain the compete state diagram showing both used and unused states and transitions. It is a self-correcting design 2. If the design is not self-correcting - modify it to obtain aself-correcting design. Show the work and draw the circuit diagra..
Design a UV flip-flop using a JK flip-flop and two logic gates. where the characteristic table for the UV flip flop is U V Q(t+1) 0 0 1 0 1 !Q(t) 1 0 Q(t) 1 1 Q(t)
Assume a house with 100 m2 of roof area. All the water runoff from the roof is collected into barrels of 55 gal capacity. The stored water is used to irrigate flower beds at the rate of 10 gal/day.
Under this condition, calculate the relative magnitudes of the resultant positive- and negative-traveling mmf waves.
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