Household electric power in most of western Europe is supplied at 240 V, rather than the 120 V that is standard in the United States and Canada. What are the advantages and disadvantages of each system?
Household electric power in most of western Europe is supplied at 240 V, rather than the 120 V that is standard in the United States and Canada. What are the advantages and disadvantages of each system?
Household electric power in most of western Europe is supplied at 240 V, rather than the 120 V that is standard in the United States and Canada. What are the advantages and disadvantages of each system?
Expert Solution & Answer
To determine
The advantages and disadvantages of the Western Europe power supply system with
240V and United States, Canada power supply system with
120V.
Answer to Problem 31.1DQ
Introduction: The High voltage power transmission is an effective transmission system, with reduced power losses to transfer the power economically and reliably.
Explanation of Solution
The transmission lines have the major power loss are
I2R losses in terms of heat, this losses are proportional to the square of current and resistance of the line. To transmit the same power by increasing voltage level and reducing the current level, the power losses can reduce effectively.
Ploss=I2R
Consider the same power
(P) transmission with these two given systems.
United States and Canada has the standard supply voltage
120V, this is the low voltage and high current transmission line, and therefore the power losses are high, because of high power losses efficiency is reduced. It is uneconomical, non-reliable, and high risk.
Western Europe has the standard supply voltage
240V, this is the high voltage and low current transmission line, and therefore the power losses are very low, due to reduced power losses efficiency will be improved. It is economical, reliable and low risk.
Conclusion: Therefore the Western Europe power supply system has the more advantages than United States supply system and Canada power supply system.
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Certain types of particle detectors can be used to reconstruct the tracks left by unstable, fast-moving sub-atomic particles. Assume
that a track with a length of L=2.97 mm in the laboratory frame of reference has been observed. Further assume that you
determined from other detector data that the particle moved at a speed of L=0.910 ⚫ c, also in the laboratory frame of reference. c
denotes the speed of light in vacuum. What proper lifetime would you determine for this particle from the data given?
T= 4.0
S
generated worksheet
While cruising down University Boulevard you are stopped by a cop who states that you ran a red traffic light. Because you don't
want to pay the stiff fine, you are attempting a physics defense. You claim that due to the relativistic Doppler effect, the red color of
the light λ=616 nm appeared green '=531 nm to you. The cop makes a quick calculation of his own and rejects your defense.
How fast, in terms of your speed u divided by the speed of light in vacuum c, would you have to drive to justify your claim? Note
that the speed u is taken to be a positive quantity.
U 4.0
C
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