Answer: no
Explanation:
force and distance are not in the same direction
Answer: Waves in compressed string
Explanation:
Longitudinal waves are waves in which the vibration of the medium is going parallel to the direction of the waves produced by the medium.
Longitudinal wave can occur in compressed string. A compressed string displaced horizontally will transmit wave in the same horizontal direction. That's why they are longitudinal waves.
Answer:
It is sound waves
(I did USAtestprep)
Explanation:
Answer: Theory
Explanation: A claim is an interpretation based on the results of a given experiment, you first observe, and interpret the information.
Evidence is the valid data itself.
The reasoning is the approach or the "logic path" you used to reach some theory or claim.
The theory is an interpretation of the natural world, that explains why and or how some things work.
If we want to support a theory, we need to have some valid data that supports, at least, part of it, so the right answer here is theory.
Notice that claim also needs to be supported for valid data, but in the case of the claim you first get the data and then make the claim, and in the theory, the work is done in the other order.
6. 2017 Ω, about 2000 Ω.
7. no current is induced unless the field is changing
6. The relationship between power, voltage, and resistance is ...
P = V²/R
Rearranging gives
R = V²/P = (220 volt)²/(24 watts) ≈ 2016.667 Ω
The closest answer choice is 2000 Ω.
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7.No current is induced in a stationary loop in a time-invariant magnetic field.
If something were changing, the direction of current induced would depend on whether the field is increasing or decreasing, and/or whether the loop is expanding or contracting.
The equivalent resistance of the input circuit is approximately 2028.33 ohms.
In this question, we are given the power input and the voltage input of a transformer, and we are asked to find the equivalent resistance of the input circuit. To find the equivalent resistance, we can use the formula:
Resistance = Voltage2 / Power
Using the given values of voltage (220 V) and power (24 W), we can substitute these values into the formula to find the equivalent resistance:
Resistance = (2202) / 24 = 2028.33 ohms
Therefore, the equivalent resistance of the input circuit is approximately 2028.33 ohms.
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