The tension in a string is 13.2 N, and its linear density is 0.699 kg/m. A wave on the string travels toward the -x direction; it has an amplitude of 4.16 cm and a frequency of 10.8 Hz. What are the (a) speed and (b) wavelength (in terms of m) of the wave? (c) Write down a mathematical expression (like Equation 16.3 or 16.4) for the wave, substituting numbers for the variables A, f, and A. (a) Number i (b) Number i (c) y- i Units Units ✓*sin i *x)

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The tension in a string is 13.2 N, and its linear density is 0.699 kg/m. A wave on the string travels toward the -x direction; it has an amplitude of 4.16 cm and a frequency of 10.8 Hz. What are the (a) speed and (b) wavelength (in terms of m) of the wave? (c) Write down a mathematical expression (like Equation 16.3 or 16.4) for the wave, substituting numbers for the variables A, f, and λ.

(a) Number: [Input field] Units: [Units dropdown]

(b) Number: [Input field] Units: [Units dropdown]

(c) \( y = \) [Input fields for variables, numbers, or parentheses] *sin([Input field for variables or numbers]*t)

[Input fields or dropdowns for units and variables]
Transcribed Image Text:The tension in a string is 13.2 N, and its linear density is 0.699 kg/m. A wave on the string travels toward the -x direction; it has an amplitude of 4.16 cm and a frequency of 10.8 Hz. What are the (a) speed and (b) wavelength (in terms of m) of the wave? (c) Write down a mathematical expression (like Equation 16.3 or 16.4) for the wave, substituting numbers for the variables A, f, and λ. (a) Number: [Input field] Units: [Units dropdown] (b) Number: [Input field] Units: [Units dropdown] (c) \( y = \) [Input fields for variables, numbers, or parentheses] *sin([Input field for variables or numbers]*t) [Input fields or dropdowns for units and variables]
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