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Forced Oscillations Damped
12/9/2018 Forced Vibration- Damped Case
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F(t) : general time dependent
External Force is F(t) : general time dependent 12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
Forced oscillator:Damped case Time dependent function 12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
Companion equation: 12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
Complementary function: Transients Try steady state solution (Particular solution) Find 12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
Complementary function: Transients Try steady state solution (Particular solution) Find 12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
Amplitude: 12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
Phase: 12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
Show amplitude resonance at: 12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
Forced oscillations for different resistances 12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
Amplitude and phase 12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
Different driving amplitudes 12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
Instantaneous power absorbed by the system: Average power over one cycle: 12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
Peak Power: Width at half peak power = 12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
Averaged power absorbed = < P > / 2 = 3 12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
Stored energy: Problem: What is the peak value and for what driving frequency? 12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
Stored energy: < E > = 3 12/9/2018 Forced Vibration- Damped Case
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Forced Vibration- Damped Case
Resonant quality factor: 12/9/2018 Forced Vibration- Damped Case
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F(t) : Sin(wt) or Cos(wt)
External Force is F(t) : Sin(wt) or Cos(wt) 12/9/2018 Forced Vibration- Damped Case
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Forced Oscillations Solution=Complementary Function +
Particular Integral
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Solutions Complementary Functions are transients
Steady State behaviour is decided by the Particular Integral
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Solution with Damping
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Amplitude and Phase (again)
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Amplitude and Phase (again)
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Some Key Points High frequency and low frequency
behaviour unchanged by damping Amplitude is finite throughout Maximum Amplitude at
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Average Energy PHYSICS 1
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Average Energy Plot
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Mild Damping Maxima at
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Mild Damping Maxima at
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FWHM FHWM=
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Power
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Average Power Using
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Average POwer
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Lorentzian Profile
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