A string is stretched so that it is under tension and is tied at both ends so that the endpoints don't move. A mechanical oscillator then vibrates the string so that a standing wave is created. The dark line in each diagram represents a snapshot of a string at an instant in time when the amplitude of the standing wave is a maximum. The lighter lines represent the string at other times during a complete cycle. All of the strings are identical except for their lengths, and all strings have the same tension. The number of nodes and antinodes in each standing wave is different. the lengths of the strings (L) and the amplitudes at the antinodes (A) are given in each figure. A A = 12 cm L= 25 cm A = 12 cm L= 28 cm A= 18 cm L= 27 cm A = 16 cm L= 28 cm Rank the frequencies of the waves. Enter in the form A > B = C ... make sure you separate characters with a space. Equal values can be entered in either order. Hint, the tension is the same so the velocity will be the same. Frequency is inversely proportional to wavelength.
A string is stretched so that it is under tension and is tied at both ends so that the endpoints don't move. A mechanical oscillator then vibrates the string so that a standing wave is created. The dark line in each diagram represents a snapshot of a string at an instant in time when the amplitude of the standing wave is a maximum. The lighter lines represent the string at other times during a complete cycle. All of the strings are identical except for their lengths, and all strings have the same tension. The number of nodes and antinodes in each standing wave is different. the lengths of the strings (L) and the amplitudes at the antinodes (A) are given in each figure. A A = 12 cm L= 25 cm A = 12 cm L= 28 cm A= 18 cm L= 27 cm A = 16 cm L= 28 cm Rank the frequencies of the waves. Enter in the form A > B = C ... make sure you separate characters with a space. Equal values can be entered in either order. Hint, the tension is the same so the velocity will be the same. Frequency is inversely proportional to wavelength.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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
Transcribed Image Text:A string is stretched so that it is under tension and is tied at both ends so that the endpoints don't move. A mechanical oscillator then vibrates the string so that
a standing wave is created. The dark line in each diagram represents a snapshot of a string at an instant in time when the amplitude of the standing wave is a
maximum. The lighter lines represent the string at other times during a complete cycle. All of the strings are identical except for their lengths, and all strings
have the same tension. The number of nodes and antinodes in each standing wave is different. the lengths of the strings (L) and the amplitudes at the
antinodes (A) are given in each figure.
А
В
A = 12 cm
L= 25 cm
A = 12 cm
L= 28 cm
C
D
A= 18 cm
L= 27 cm
A = 16 cm
L= 28 cm
Rank the frequencies of the waves.
Enter in the form A > B = C ... make sure you separate characters with a space. Equal values can be entered in either order. Hint, the tension is the same so
the velocity will be the same. Frequency is inversely proportional to wavelength.
Check
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