Calculate the total charge enclosed within the triangular region in the figure below where p,=3xy C/cm2. y(m) 2. x(m)
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- Calculate the linear charge density (nC/m) when the inner diameter of the pipe is 19mm and the wire diameter is 138 μm. a voltage of 866 V is connected between the wire and the pipe.Find the total current flowing (in ampere) in a cylindrical conductor (solid wire) 1 meter long and a diameter of 1mm. Given also that its charge density (De) is 1029 carriers/m3 and its carrier velocity (u) is 19.9x10-6 m/s.A wire having a uniform linear charge density λ=16 nC/m is bent into the shape shown in the figure. Find the electric potential at point O. (Answer in 2 decimal places)
- Three equal charges of +2C are arranged in a straight line in the sequence of Q1, Q2 and Q3. The distance between charge 1 and 2 is 3/4 meters while the distance between charge 2 and 3 is 1/4 meters. What is the total electric field intensity experienced by Charge 3? Note: Your Answer should be in Giga-Newton per Coulomb unit and is written in the form: 14.143x10^9 N/C Pls include figures.Three equal charges of +2C are arranged in a straight line in the sequence of Q1, Q2 and Q3. The distance between charge 1 and 2 is 3/4 meters while the distance between charge 2 and 3 is 1/4 meters. What is the electric field intensity at charge 3 that is caused by Charge 2? Note: Your Answer should be in Giga-Newton per Coulomb unit and is written in the form: 14.143x10^9 N/C Pls include figures.A certain conductor bar of rectangular cross section 0.02 by 0.08 m and length 2.0 m has a voltage of 50 mV. If its conductivity is 5.8 x 107 S/m and its mobility is 3.20 x 10-3 m2/V-s, find its volume charge density in giga-C/m3.
- Three equal charges of +3C are arranged in a straight line in the sequence of Q1, Q2 and Q3. The distance between charge 1 and 2 is 3/4 meters while the distance between charge 2 and 3 is 5/4 meters. What is the total electric field intensity at charge 2? Note: Your Answer should be in Giga-Newton per Coulomb unit and is written in the form: 14.143x10^9 N/C Pls include figures.Four equal point charges q1 = q2 = q3 = q4 = −1μC, are located as shown in the figure below. (a) Calculate the net force exerted on the charge q4, which is located midway between q1 and q3. (b) Calculate the magnitude and direction of thenet force on the charge q2.Diagram of the problem, necessary formulas, clearance and numerical solution. A steady current of 0.5 A flows through a wire. How much charge passes through the wire in one minute?
- Calculate the linear charge density (nC/m) when the inner diameter of the pipe is 19.6 mm and the wire diameter is 137 μm. a voltage of 827 V is connected between the wire and the pipe. Calculate it by using C=2πϵ0*L/r(a)/r(b), as a cylinder capacitor.The current through a given circuit element is given by i(t) = 2 e−t A. Find the net charge that passes through the element in the interval from t = 0 to t = ∞ [Hint:Current is the rate of flow of charge. Thus, to find charge, we must integrate current with respectto time.]Volume charge density is given by e^-1000ρe^-100z C/m^3 . Find the maximum value of ρv in the region 0 ≤ ρ ≤ 0.01 m, 0 ≤ Φ ≤ 2π, 0 ≤ z ≤ 0.01 m.