25.4 and 25.5 Frequency, wavelength, and the electromagnetic spectrum and Mathematical description of EM waves and EM wave energy * (a) The amplitude of the E → field oscillations in an electromagnetic wave traveling in air is 20.00 N/C What is the amplitude of the B → field oscillations? (b) The amplitude of the B → field oscillations in an electromagnetic wave traveling in a vacuum is 3.00 × 10 − 3 T . What is the amplitude of the oscillations of the E → field?
25.4 and 25.5 Frequency, wavelength, and the electromagnetic spectrum and Mathematical description of EM waves and EM wave energy * (a) The amplitude of the E → field oscillations in an electromagnetic wave traveling in air is 20.00 N/C What is the amplitude of the B → field oscillations? (b) The amplitude of the B → field oscillations in an electromagnetic wave traveling in a vacuum is 3.00 × 10 − 3 T . What is the amplitude of the oscillations of the E → field?
25.4 and 25.5 Frequency, wavelength, and the electromagnetic spectrum and Mathematical description of EM waves and EM wave energy
* (a) The amplitude of the
E
→
field oscillations in an electromagnetic wave traveling in air is 20.00 N/C What is the amplitude of the
B
→
field oscillations? (b) The amplitude of the
B
→
field oscillations in an electromagnetic wave traveling in a vacuum is
3.00
×
10
−
3
T
. What is the amplitude of the oscillations of the
E
→
field?
Interaction between an electric field and a magnetic field.
At point A, 3.20 m from a small source of sound that is emitting uniformly in all directions, the intensity level is 58.0 dB. What is the intensity of the sound at A? How far from the source must you go so that the intensity is one-fourth of what it was at A? How far must you go so that the sound level is one-fourth of what it was at A?
Make a plot of the acceleration of a ball that is thrown upward at 20 m/s subject to gravitation alone (no drag). Assume upward is the +y direction (and downward negative y).
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