
What is the voltage difference of a lightning bolt if the power is 1.575E + 11w,...
What is the power of a 110 MV lightning bolt having a current of 22,900 A? x How is electric power related to the voltage and the current? W
QUESTION 3 A lightning bolt might carry a current of 100 A and last for about 31 ms, as shown in the figure below. Determine the amount of charge (in coulombs) that is exchanged between ground and cloud is such a lightning bolt. (Enter your answer as a number without the units.) +i=10°
What is the power of a 29.1 MV lightning bolt that carries an electric current of 12.8 kA? PLEASE ANSWER IN W.
A lightning bolt transfers 30 C of charge to Earth through an
average potential difference of 40 MV.
Unit 3: Prelecture Problems Problems: Electric Potential & Capacitor Deadline: 100% until Sunday, January 27 at 11:59 PM Cumulative Problem 4 A lightning bolt transfers 30 C of charge to Earth through an average potential difference of 40 MV. 1) How much energy is dissipated in the bolt? (Express your answer to two significant figures.) GJ Submit You currently have 0 submissions...
(1) A large lightning bolt had a 20,500 A current and moved 32.5 C of charge. What was its duration (in ms)? (2) A power transmission line is hung from metal towers with glass insulators having a resistance of 2.55 ✕ 109 Ω. What current (in mA) flows through the insulator if the voltage is 280 kV? (Some high-voltage lines are DC.)
You are standing at x=8.0km and
your assistant is standing at x=5.0km. Lightning bolt 1 strikes at
x=0km and lightning bolt 2 strikes at x=12.0km. You see the flash
from bolt 2 at t=12μs and the flash from bolt 1 at t=60μs.
According to your assistant, were the lightning strikes simultaneous? You are standing at z 8.0km and your assistant is standing at5.0km. Lightning bolt 1 strikes at 0 km and lightning bolt 2 strikes at T 12.0km. You see...
(a) (a) What energy (in J) is dissipated by a lightning bolt having a 17,000 A current, a voltage of 1.45 ✕ 102 MV, and a length of 1.00 ms? ___________J (b) What mass (in kg) of tree sap could be raised from 18.0°C to its boiling point and then evaporated by this energy, assuming sap has the same thermal characteristics as water? ___________kg
A lightning bolt strikes a tree, moving 21.29 C of charge through a potential difference of 81 MV. What energy was dissipated? 1MV = 106V You need to express you answer in MJ: 1 MJ = 106J You should round your answer to an integer, indicate only the number, do not include the unit.
A lightning bolt may carry a current of 1.00 Times 10^4 A for a short time. What is the resulting magnetic field 200 m from the bolt? Suppose that the bolt extends far above and below the point of observation. Your response differs from the correct answer by more than 100%. MuT
007 10.0 points A bolt of lightning, such as the one shown on the left in the figure, behaves like a vertical wire conducting electric current. As a result, it produces a magnetic field whose strength varies with the distance from the lightning. A 108-turn circular coil with a radius of 0.835 m is oriented perpendicular to the magnetic field as shown. The magnetic field at the coil drops from 4.30 x 10 3 T to 0.00 T in 10.5...