A large power plant generates electricity at 12.0 kV. Its old transformer once converted the voltage to 335 kV. The secondary at this transformer is being replaced so that its output can be 750 kV for more efficient cross-country transmission on upgraded transmission lines. (a) What is the ratio of turns in the new secondary compared with the old secondary? (b) What is the ratio of new current output to old output (at 335 IN) for the same power? (c) If the upgraded transmission lines have the same resistance, what is the ratio of new line power loss to old?
A large power plant generates electricity at 12.0 kV. Its old transformer once converted the voltage to 335 kV. The secondary at this transformer is being replaced so that its output can be 750 kV for more efficient cross-country transmission on upgraded transmission lines. (a) What is the ratio of turns in the new secondary compared with the old secondary? (b) What is the ratio of new current output to old output (at 335 IN) for the same power? (c) If the upgraded transmission lines have the same resistance, what is the ratio of new line power loss to old?
A large power plant generates electricity at 12.0 kV. Its old transformer once converted the voltage to 335 kV. The secondary at this transformer is being replaced so that its output can be 750 kV for more efficient cross-country transmission on upgraded transmission lines. (a) What is the ratio of turns in the new secondary compared with the old secondary? (b) What is the ratio of new current output to old output (at 335 IN) for the same power? (c) If the upgraded transmission lines have the same resistance, what is the ratio of new line power loss to old?
A step-up transformer is designed so that the output of its secondary winding is 240 V when
the primary winding is connected to a 120-V line voltage.
(a) If there are 100 turns in the primary winding, how many turns are there in the secondary
winding?
(b) If the coffee grinder in an espresso machine connected across the secondary winding has
a power rating of 240W, what is the current in the primary winding?
A large power plant generates electricity at 12.0 kV. Its old transformer once converted the voltage to 335 kV. The secondary of this transformer is being replaced so that its output can be 750 kV for more efficient cross-country transmission on upgraded transmission lines. (a) What is the ratio of turns in the new secondary compared with the old secondary? (b) What is the ratio of new current output to old output (at 335 kV) for the same power? (c) If the upgraded transmission lines have the same resistance, what is the ratio of new line power loss to old?
A transformer is used to charge a cell phone. The number of turns on the primary coil is 600. The
voltage input is 120 V and the output needs to be 9.0 V. The output current is 40 milliamperes.
What is the number of turns on the secondary coil and the current in the primary. Assume the
transformer is 100% efficient.
The number of turns on the secondary coil is 45 and the current in the primary
is 533 milliamperes
The number of turns on the secondary coil is 8000 and the current in the primary
is 533 milliamperes
The number of turns on the secondary coil is 45 and the current in the primary is
3.0 milliamperes.
The number of turns on the secondary coil is 8000 and the current in the primary
is 3.0 milliamperes
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