Calculate the fundamental frequency of vibration of an air column enclosed in a pine open at both the ends of length 0.2 m, V = 340 m/ses.
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![Calculate the fundamental frequency of
vibration of an air column enclosed in a
pipe
open at both the ends of length 0.2 m, V = 340
m/sec.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0ab84837-fd57-471b-acf8-1a23346932de%2Fec038ca7-6c23-4354-8eb7-028c32762ade%2Faa176ll_processed.jpeg&w=3840&q=75)
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- 13.22 A harmonic oscillator of frequency f = 0.50 Hz has an amplitude of 10.0 cm. (a) What is the maximum speed of its motion? (b) What is the maximum ac- celeration?The midpoint of a guitar string executes simple harmonic motion with motion following the form x(t) = A sin(wt + p). It has an angular frequency of w = 2.65 × 10³ s-¹ and an amplitude of A = 1.50 mm. Take the phase constant to be p = π/2.11:10 with A simple pendulum mass 0.214 kg hangs from string 1.48 m long. (See the figure below.) A leaf blower blows air at it, exerting a constant horizontal drag force 140 N. Find the following. (Assume the pendulum is in mechanical equilibrium . the the string XN Bater the angle the pendulum maker with respect to the vertical from the vertical ftude Gujarati 400 KB/S LTE 43% 0.214 કિગ્રા વજન લાતાં ખેદ વાતું લોલક 1.48 મીટર + New translation છે. (નીચેની આકૃતિ જુઓ.) એક Gra רו רנו
- In the methane molecule, CH4, each hydrogen atom is at the corner of a regular tetrahedron with the carbon atom at the center. If one of the C-H is in the direction of A=î +î+R and an adjacent C-H bond is at the direction B=î-Î-R. results to an angular bond of approximately 109° for a static frozen molecule. However, the molecule we can encounter everyday continuously vibrates and interact with the surrounding causing its bond vector to vary slightly. According to a new spectroscopy analysis, the adjacent bond vectors was found to be A = 1.06i + 0.8j + 1.03k B = 1i + -0.92j + -0.95k What is the angle (in degrees) between the bonds based on this new data? Note: Only 1% of error is permitted for the correct answer.In the methane molecule, CH4, each hydrogen atom is at the corner of a regular tetrahedron with the carbon atom at the center. If one of the C-H is in the direction of A=î + Î +R and an adjacent C-H bond is at the direction B=î-1-R. results to an angular bond of approximately 109° for a static frozen molecule. However, the molecule we can encounter everyday continuously vibrates and interact with the surrounding causing its bond vector to vary slightly. According to a new spectroscopy analysis, the adjacent bond vectors was found to be A= 1.01i + 1.07j + 1.09k B = 0.92i + -1.07j + -1.04k What is the angle (in degrees) between the bonds based on this new data? Note: Only 1% of error is permitted for the correct answer.Figure 15-47 53 SSM ILW In the overhead view of Fig. 15- 48, a long uniform rod of mass 0.600 kg is free to Problem 52. rotate in a horizontal plane about a vertical axis through its center. A spring with force constant k = 1850 N/m is connected horizontally be- k Wall tween one end of the rod and a Rotation axis fixed wall. When the rod is in equi- librium, it is parallel to the wall. What is the period of the small os- cillations that result when the rod is rotated slightly and released? Figure 15-48 Problem 53.
- Needs Complete typed solution with 100 % accuracy.h wwww M A pendulum of length L = 0.61m and mass 4.8Kg has a spring of force constant k =610 N/m connected to it at a distance h = 0.35m below its point of suspension. Find the frequency 'f' of vibration of the system for small values of the amplitude (small 6). Assume the vertical suspension of length L is rigid, but ignore its mass. Use g=9.8 for gravity. Round your answer to 3 decimal places.In the vibrational motion of HI, the iodine atom essentially remains stationary because of its large mass. Assuming that the hydrogen atom undergoes harmonic motion and that the force constant is 317 N m-1, what is the fundamental vibration frequency?