<span>If a plane has a velocity of 300 km/h and a tailwind of 20 km/h, then the vectors of both forces would add (assuming that the tailwind is blowing exactly at the airplanes back) to a total of 320 km/h. Hope it helps
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Answer:
A: the intensity
Explanation:
the closer the sound, the more intense it is. Think about the ambulance illustration in your text book (assuming you are using a physics textbook) : )
I didn't want to type all of this, so instead I showed proof and gave you the answer.
Answer:
Explanation:
Given
Temperature of Room
Area of Person
Temperature of skin
Heat transfer coefficient
Emissivity of the skin and clothes
Total rate of heat transfer=heat Transfer due to Radiation +heat transfer through convection
Heat transfer due radiation
where
Heat Transfer due to convection is given by
<h3>16.</h3>
Your answer is correct.
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<h3>17.</h3>
The fractional change in resistance is equal to the given temperature coefficient multiplied by the change in temperature.
R = R₀×(1 + α×ΔT)
R = (10.0 Ω)×(1 + 0.004×(65 -20)) = 11.8 Ω