7- in a concentric spherical electrode system, the outer radius is 40 cm, the applied voltage is 100 kV, the puncture strength of the insulator It Is 100KV/CM. Calculate the lmit values that the Inner radlus must take to avold puncture In the system. a) 1.89 cm and 37.89 cm b) none c) 1.54 cm and 39.39 cm d) 1.02 cm and 38.97 cm1 M001102 Leave it blank
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- (a) Calculate the mass of a proton using the charge-to-mass ratio given for it in this chapter and its known charge. (b) How does your result compare with the proton mass given in this chapter?1079 V/m 9.55 x 10-9 8.854 x 10-12p Both of these expressions apply to the region where 14 mm, E and D are zero. D3.5. A point charge of 0.25 µC is located at r= 0, and uniform surface charge densities are located as follows: 2 mc/m? at r = 1 e and -0.6 mC/m at r = 1.8 cm. Calculate D at: (a) r= 0.5 cm; (b) r = 1.5 cm; (c) r = 2.5 cm. (d) What uniform surface char density should be established at r= 3 cm to cause D = 0 at r = 3.5 cm? Ans. 796a, uC/m; 977a, µC/m?; 40.8a, uC/m; -28.3 µC/m?. Chapter 3: Electric Flux Density, Gauss's Law, and Divergence Page 16 Lecturer: Dr. Haydar Al-Tam1) Consider the figure below. An electron is fired towards a conducting plate from a distance L. The plate has a surface charge density a and a radius that is much greater than the distance L.. When the electron strikes the plate, it is measured that AK. E. 10 eV, where AK. E. Ty-To is the difference between the electron's final kinetic energy and initial kinetic energy. = a) Draw a diagram of the configuration including the co-ordinate system you have chosen. b) Write the integral equation for the work done on the electron when moving from it's initial position to an arbitrary final position, x . c) Write the integral equation for the potential difference of the system for a path that begins at the electron's initial position and ends at an arbitrary position, x. d) Determine the equation for the potential difference between the initial position of the electron and an arbitrary position, x. e) Plot the potential difference from part d) f) If the electron is initially at rest and L=…
- 1. Adjust the voltage to 0.05x V and adjust the plate area to 10y mm² and the separation distance to 0.2z mm. What is the magnitude of the charge (in Coulombs) stored in each plates for x= −27, y= 21, and z= 39? 2. Adjust the voltage to 0.05x V and adjust the plate area to 10y mm² and the separation distance to 0.2z mm. What is the magnitude of the Potential Energy in Joules in capacitor for x= -8 and y= 10? 3. Adjust the voltage to 0.05x V and adjust the plate area to 10y mm² and the separation distance to 0.2z mm. What is the magnitude of the charge stored in each plates for x= −25 and y= 14?Conversion Watt 312 cal/s 0.5 W/cm? cal/cm's .. W/m 10'ergs/cm sC C ... 5W/50*10 cm? ergs/cm's .. .. . Coulomb 0.88 e.m.u 10 Wb/107 cm? .. .. gauss1) Consider the figure below. An electron is fired towards a conducting plate from a distance L. The plate has a surface charge density and a radius that is much greater than the distance L. When the electron strikes the plate, it is measured that AK. E. = 10 eV, where AK.E.= Tf - To is the difference between the electron's final kinetic energy and initial kinetic energy. Using a co- ordinate system with the origin placed at the initial position of the electron: a) Draw a diagram of the configuration including the co-ordinate system you have chosen b) Write the integral equation for the work done on the electron when moving from it's initial position to an arbitrary final position, x c) Write the integral equation for the potential difference of the system for a path that begins at the electron's initial position and ends at an arbitrary position, x. d) Determine the equation for the potential difference between the initial position of the electron and an arbitrary position, x. e) Plot…
- Choose the correct answer. Lightning is a visible electrostatic discharged of very high potential ranging from about 100,000 V to 3 Million V in a regular stormy atmosphere to impact potential damage of about 1 Gigajoule of energy. This natural phenomena occurs in order a. to neutralize the charge separation between clouds b. to bridge the gap between two highly ionized but oppositely charged clouds c. for negatively charged cloud particles to seek "ground" level d. any or all of the above theories4. The solar wind consists of protons from the Sun moving toward Earth (the wind actu- ally consists of about 95% protons). The number density of protons at a distance from the Sun equal to the orbital radius of Earth is about 7 protons per cubic centimeter. Your rescarch team monitors a satellite that is in orbit around the Sun at a distance from the Sun equal to Earth's orbital radius. You are in charge of the satellite's mass spectrometer, and instrument used to measure the composition and intensity of the solar wind. The aperture of your spectrometer is a circle of radius 25 cm. The rate of collection of protons by the spectrometer is such that they constitute a mcasured current of 85 nA. What is the speed of the protons in the solar wind? (Assume the protons enter the aperture at normal incidence.)What is the dimension of volume charge density? a) [MLAT-2] b) [M0 L-3 A T] c) [M L-3 A T] d) [M L-2 A T]
- QUESTIONS 1. For the charging process, show that if 1-lo exp(-t/ta), then In (lo/1) (1/TR) t.File 2 Undo A2 22 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 Home Insert A B 1 Charge (C) Magnitue (N) 2 0.02 449.378 3 0.028 229.274 4 0.036 138.677 0.044 92.847 0.052 66.476 0.06 49.931 0.068 38.873 0.076 31.12 0.084 25.475 0.092 21.237 0.1 17.975 22 Paste XAY Clipboard 5 V X✓ Sheet1 Page Layout Calibri B I U- C 0.02 D Force magnitude (N) Formulas Data Review View Font 500 450 400 350 300 250 200 150 100 50 0 0 11 - AA a A V E F 0.02 5 229.274 G 138.677 92.847 0.04 Help Series1 44995ce magnitude (N) vs Distance(m) M Alignment H →= y=0.1798x2 R² = 1 0.06 Distance (m) General 0.08 $ % 98 Power (Series1) 66.47649.9338.87331.1225.47221.2377.975 J Number 0.1 K 0.12 52-in a concentric spherical electrode system, the outer radius is 20 cm, the applied voltage is 200 kV and is constant. Inner radius 17 cm n calculate Emax while. does the puncture occur? What happens to the type? (Ed=60 kV / cm) a) Emax=44.43 kv, partial discharge b) Emax=78.43 kV/ cm, Full puncture 01102 c) Emax=78.43 kV, full puncture d) Emax=44.43 kV/cm. Partial Discharge