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习题练习:Stationary wave on string



 作者: admin发布日期: 2024-08-03 17:17   总分: 11分  得分: _____________

答题人: 匿名未登录  开始时间: 24年08月03日 17:17  切换到: 整卷模式

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1#
 
单选题 ( 1.0 分) 切至整卷模式 搜藏此题  
  12.04: The wave speed is 20.0 m/s for waves traveling on a str (q p,owxit ey):*qx.ning tied at both ends. If sinusoidal waves n)x :(xyq*tpiqw,eo. with a frequency of 2.00 Hz are traveling on this string, which one of the following choices best represents the period of these waves?

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2#
 
单选题 ( 1.0 分) 切至整卷模式 搜藏此题  
  15.04: A standing wave on a string is produced. Which one of the following+:j/3dgf blkn qu8lj oa;gu;8 choices best describes the location on the string at which maximum constructive38;kau/+gl; qljdn 8b: fjg ou interference occurs?

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3#
 
单选题 ( 1.0 分) 切至整卷模式 搜藏此题  
  07.37: A place of zero displacement on a standic bl6(nv( 1wwcng wave is called

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4#
 
单选题 ( 1.0 分) 切至整卷模式 搜藏此题  
  97.19: The standing wave pattern diagrammed to the right is produced in a s*k y6)oq,cgpz tring fixed at both ezcqg6py),*o k nds. The speed of waves in the string is 2.0 m/s. What is the frequency of the standing wave pattern?

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5#
 
单选题 ( 1.0 分) 切至整卷模式 搜藏此题  
  94.19: A string is firmly attache**n:j xgnv vx4d at both ends. When a frequency of 60 Hz is applied, the strin4 j :v**xvnxngg vibrates in the standing wave pattern shown to the right. Assume the tension in the string and its mass per unit length do not change. Which of the following frequencies could NOT also produce a standing wave pattern in the string?

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6#
 
单选题 ( 1.0 分) 切至整卷模式 搜藏此题  
  02.45: A light inextensible string is connected to a mass M, that provides g2e o:o(seioq0 ;r5rcthe tension in the string. A length L of the string has a fundamental frequency of vibra :o20ore;e(s ioqc gr5tion of $f_M$. If a second identical mass is now connected to the original mass, the new fundamental frequency of the string $f_{2M}$ of string length L in comparison to the fundamental frequency with only one mass connected $f_M$ is

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7#
 
单选题 ( 1.0 分) 切至整卷模式 搜藏此题  
  04.49: A uniform string clamped at both ends is vibrated at constsj myyy)3gigr;.(o/ xa qc n /6ose4b-ant frequency f. Ini oy)6.eco4g(nqax; / bjy s/imygrs-3tially, its vibration forms a standing wave with three antinodes. The tension in the string is gradually increased until the next standing wave mode appears. By what factor has the tension in the string changed? Assume that the string maintains the same dimensions throughout the tightening

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8#
 
单选题 ( 1.0 分) 切至整卷模式 搜藏此题  
  06.29: Two separate strings of the cd gzld44 /sf)f;rcckm)w7v1 same thickness are stretched so that they experience the same tension.;4dc/d7c zv)rs fgl)f mk1cw4 String B is twice as dense as String A. String A, of length L, is vibrated at the fundamental frequency. How long is String B if it has the same fundamental frequency as String A?

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9#
 
单选题 ( 1.0 分) 切至整卷模式 搜藏此题  
  13.06: A 1.50 m-long string clamped at both ends is vibrating t ib2rx2/s gan0z3nl6 at its second harmonic.it 23razs 0xlbn g62/n What is the wavelength associated with the string for this scenario?

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10#
 
单选题 ( 1.0 分) 切至整卷模式 搜藏此题  
  A string is connected to a mechanical oscillator on one end and 6ua+ovg ar g9;b.hbr2 to a cube-shaped mass ???? = 8.0 ????????, at the other end as shown. The oscillator vibrates the string with a frequency of f producingu.b29bg ahg+rao; r6v the standing wave in the figure on the left. When the mass is submerged completely in water, the string vibrates in the standing wave pattern shown.


16.37:What is the value of the ratio for the tension when the mass is submerged in water to the
tension when the mass is hanging in air?

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11#
 
单选题 ( 1.0 分) 切至整卷模式 搜藏此题  
  A string is connected to a (zeoqx1sdwo+3 bze8vm)ra3 1 mechanical oscillator on one end and to a cube-shaped mass ???? = 8.0 ????????, at the other end as shown. The oscillator vibrates the string with a frequency of f producing the standing wave in the figure on 1 do1bz v+r8owzx3ame)seq3 (the left. When the mass is submerged completely in water, the string vibrates in the standing wave pattern shown


16.38: What is the length of one side of the cube of mass M?

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