The charge entering the positive terminal of an element is q(t)=-40e^(-5t )C. If the voltage across the element is 20e^(-4t )V. Calculate the energy (J) delivered to the element in the interval of 0
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- Find the energy delivered to an element between 0 and 8 ms if the charge entering the positive terminal is q = 10 cos 125 πt mC and the voltage is v = 6 sin 125 πt VThe charge entering the positive terminal of an element is q = 6 sin(4πt) mC, while the voltage across the element (plus to minus) is v = 6 cos(4πt) V. Calculate the energy delivered to the element between 0 and 0.6 s. in mJCharge entering the positive end of an element q = 5 sin (4π t) mC while your element voltage at the ends of v = 3 cos (4π t) V given as. Power transferred to the element at t = 0.3 s Find.
- Charge entering the positive end of an element q = 5 sin (4π t) mC while your element voltage at the ends of v = 3 cos (4π t) V given as. Transferred to the element in the range of 0 to 0.6 s Calculate the energy.The total charge entering a terminal is given by q = 2e3t cos (6\pi t), in µC. Determine the current at t= 0.25 s.Determine the current flowing through an element if the charge flow is given by q(t) = (8t^2 + 4t – 2)C?
- 1. Determine the current flowing through an element if the charge flow is GIVEN BY: (CHECK ATTACHED PHOTO)The current entering the upper terminal is i=24 cos 4000t A Assume the charge at the upper terminal is zero at the instant the currentis passing through its maximum value. Find the expression for q(t).The charge entering the element is q(t) = -30e^(-4t) mC. If the voltage across the element is v(t)=120e^(-2t) V, determine the energy (mJ) delivered to the element in the time interval of 0< t< 50mS.
- The power delivered to an element is p = 12 sin 4t W and the voltage is v = 4 sin 2t V. Find the current entering the positive terminal and the charge delivered to the element between 0 and π/4 sec.A current-carrying gold wire has diameter 2.76 mm. The electric field in the wire is 6.6 V/m. What is the current carried by the wire in kA? Note that the resistivity of gold is p= 2.44x10-8 ohms*m1) The charge entering the positive terminal of an element is q = 5 sin 4πt, mC while the voltage across the element (plus to minus) is v = 3 cos 4πt, V. a. Find the power delivered to the element at s. b. Calculate the energy delivered to the element between 0 and 0.6 s