Amplitude of a spring equation

    • [DOC File]FORCES

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      2. Write down an equation that is the relationship between the object’s period, its mass, and the spring constant. Solve the equation for the spring constant in terms of the object’s mass and period. Exploration. Method #1 - Static Approach: Select a series of masses that give a usable range of displacements.

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    • [DOC File]“Hooke’s Law and Simple Harmonic Motion”

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      It should be noted that at amplitude of 0.100 m, the hook lost contact with the spring for a split second at the apex of oscillation, which accounts for its oddity in period. This was something that could not be avoided; at that amplitude the spring pulled the hook up too quickly which caused the loss of contact.

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    • [DOCX File]Chapter 15 Problems

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      = 0), show that Equation 15.35 is a solution of Equation 15.34, with an amplitude given by Equation 15.36. 47. A weight of 40.0 N is suspended from a spring …

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    • [DOC File]Chapter 10

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      Jul 12, 2012 · where A is the amplitude of oscillation and ( (the lower case Greek letter omega) is called the angular frequency, and is measured in radians per second. The quantity (t is called the phase, and is an angle in radians. The mass on the spring makes one full oscillation (2( radians) in one period T, so the angular frequency can be found by

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    • [DOC File]SPRINGS - Hendrix College

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      The period of the motion (the time to go from the maximum amplitude to the minimum and back to the maximum) is given by: (3) where is the mass attached to spring with spring constant . Strictly speaking, equation 3 holds true only for one of those physics oddities: "a massless spring".

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    • Chapter 7: Blah - OpenTextBookStore

      After 4 seconds the amplitude has decreased to 14 cm. The spring oscillates 13 times each second. Find a function that models the distance, D the end of the spring is below equilibrium in terms of seconds, t, since the spring was released. Match each equation form with one of the graphs. 13. a. b. 14. a. b. I II III IV

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    • [DOCX File]Transformers-Toys-Action Figures-Store-Pictures ...

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      If the amplitude of the spring-mass system’s motion is doubled, the period will be: ¼ T (B) ½ T(C) T (D) 2T (E) 4T Ex2: A mass m is attached to a spring with a spring constant k.

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    • [DOC File]Simple harmonic motion-

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      linear differential equation. where A0 is the driving amplitude and ω is the driving . frequency. for a sinusoidal driving mechanism. This type of system appears in . AC. LC (inductor-capacitor) circuits and idealized spring systems lacking internal mechanical resistance or external . air resistance. Damped harmonic oscillator. Main article ...

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    • [DOC File]4A Hooke's Law - St. John's University

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      3. Repeat (2) with an amplitude of about 2 cm and a value of N between 90-110. 4. Repeat (1) and (2) with m = 250g. 5. Repeat (1) and (2) with m = 300g. Lab Report Part I. Theory: In equation 1 above, x represents the amount the spring stretched = (S - So). You can calculate the spring constant k from your data using equation 1 : Fs = k (S - So)

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    • [DOC File]Simple Harmonic Motion

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      Compare the observed motion of a mass and spring system to a mathematical model of simple harmonic motion. Determine the amplitude, period, and phase constant of the observed simple harmonic motion. Materials. LabQuest 200 g and 300 g masses LabQuest App. Motion Detector spring, with a spring constant of . approximately 10 N/m

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