Three pieces of string, each of length L , are joined together end to end, to make a combined string of length 3 L . The first piece of siring has mass per unit length μ 1 , the second piece has mass per unit length μ 2 = 4 μ 1 and the third piece has mass per unit length μ 3 = μ 1 /4. (a) If the combined string is under tension F , how much time does it take a transverse wave to travel the entire length 3 L ? Give your answer in terms of L , F , and μ 1 . (b) Does your answer to part (a) depend on the order in which the three pieces are joined together? Explain.
Three pieces of string, each of length L , are joined together end to end, to make a combined string of length 3 L . The first piece of siring has mass per unit length μ 1 , the second piece has mass per unit length μ 2 = 4 μ 1 and the third piece has mass per unit length μ 3 = μ 1 /4. (a) If the combined string is under tension F , how much time does it take a transverse wave to travel the entire length 3 L ? Give your answer in terms of L , F , and μ 1 . (b) Does your answer to part (a) depend on the order in which the three pieces are joined together? Explain.
Three pieces of string, each of length L, are joined together end to end, to make a combined string of length 3L. The first piece of siring has mass per unit length μ1, the second piece has mass per unit length μ2 = 4μ1 and the third piece has mass per unit length μ3 = μ1/4. (a) If the combined string is under tension F, how much time does it take a transverse wave to travel the entire length 3L? Give your answer in terms of L, F, and μ1. (b) Does your answer to part (a) depend on the order in which the three pieces are joined together? Explain.
From your examination of the graph created using the data in Data Table 4 of Period, T vs √L . What would you determine is the relationship between the period of a pendulum and the length of a pendulum?
In a certain bimetallic strip, the brass strip is 0.100% longer than the steel strip at a temperature of 283°C. At what temperature do the two strips have the same length? Coefficients of linear expansion for steel α = 12.0 × 10−6 K−1 and for brass α = 19.0 × 10−6 K−1 (see Table 13.2).
Review Conceptual Example 2 before attempting this problem. Two slits are 0.158 mm apart. A
mixture of red light (wavelength = 693 nm) and yellow-green light (wavelength = 567 nm) falls on the
slits. A flat observation screen is located 2.42 m away. What is the distance on the screen between
the third-order red fringe and the third-order yellow-green fringe?
m = 3
m = 3
m = 0
m = 3
m = 3
Fringes on observation screen
Chapter 15 Solutions
University Physics with Modern Physics, Volume 1 (Chs. 1-20) (14th Edition)
Chemistry: An Introduction to General, Organic, and Biological Chemistry (13th Edition)
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