motion with amplitude 2.00 cm and an Frequency 2.00 rad/s?
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- What frequency is depicted in the following equation of an oscillator? Assume that the units work out and the amplitude is in millimeters and the time tt is in seconds. x(t)=−2.2sin(40t−π3)x(t)=−2.2sin(40t−π3) a. 6Hz6Hz b. 20πHz20πHz c. 16Hz16Hz d. 180πHz180πHz e. π20Hzπ20Hz f. 80πHz80πHzThe human eardrum responds to sound by vibrating. If the eardrum moves in simple harmonic motion at a frequency of 2.88 kHz and an amplitude of 0.132 nm, what is its maximum speed of vibration? in. μm/sA mass mm at the end of a spring oscillates with a frequency of 0.86 HzHz . When an additional 780 gg mass is added to mm, the frequency is 0.63 HzHz .What is the value of m?
- The equation of motion of a particle in simple harmonic motion is given by :x(t) =0,2cos(wt), where x is in meter and t is in seconds. At x=0,the particle's velocity is v=-1,256 m/s. The period of oscillation, t, equals?A mass weighing 2lb stretches a spring 6in. If the mass is pulled down an additional 3in and then released, and if there is no air resistance, find the natural frequency, period and amplitude of the motion. O Natural frequency w = 8 rad/sec, Period T = sec, Amplitude R ft Natural frequency w = = 4 rad/sec, Period T = sec, Amplitude R ft O Natural frequency w = 8 rad/sec, Period T = sec, Amplitude R = ft 1 O Natural frequency w = 8 rad/sec, Period T = sec, Amplitude R = ft 8The motion of a body is described by the equation 4.90 sin (0.170πt) where t is in s and y is in m. (a) Find the amplitude.(b) Find the period.(c) Find the frequency.(d) Find the displacement at t = 5.00 s.(e) Find the displacement at t = 30.0 s.