Skip to main content
Ch 15: Oscillations
Knight Calc - Physics for Scientists and Engineers 5th Edition
Knight Calc5th EditionPhysics for Scientists and EngineersISBN: 9780137344796Non è quello che usi tu?Cambia libro di testo
Capitolo 15, Problema 35

Vision is blurred if the head is vibrated at 29 Hz because the vibrations are resonant with the natural frequency of the eyeball in its socket. If the mass of the eyeball is 7.5 g, a typical value, what is the effective spring constant of the musculature that holds the eyeball in the socket?

Guida verificata passo dopo passo
1
Step 1: Recognize that this problem involves the concept of resonance in a mass-spring system. The natural frequency of a system is given by the formula: f = 12πkm, where f is the frequency, k is the spring constant, and m is the mass.
Step 2: Rearrange the formula to solve for the spring constant k. The rearranged formula is: k = 4π22f2m.
Step 3: Convert the mass of the eyeball from grams to kilograms, as SI units are required for calculations. The mass is given as 7.5 g, which is equivalent to 7.5×10-3 kg.
Step 4: Substitute the given values into the formula. The frequency f is 29 Hz, and the mass m is 7.5×10-3 kg. Plug these values into the formula for k: k = 4π22292×7.5×10-3.
Step 5: Perform the calculation to determine the effective spring constant k. Ensure all units are consistent and verify the result for accuracy.

Risposta video verificata per un problema simile:

Questa soluzione video è stata consigliata dai nostri tutor come utile per risolvere questo problema.
Durata del video:
2m

Concetti chiave

Ecco i concetti essenziali che devi comprendere per rispondere correttamente alla domanda.

Natural Frequency

Natural frequency is the frequency at which a system tends to oscillate in the absence of any driving force. In the context of the eyeball, it refers to the specific frequency at which the eyeball vibrates when subjected to external forces, such as vibrations from the head. When external vibrations match this natural frequency, resonance occurs, leading to amplified oscillations and potential blurriness in vision.
Video consigliato:
Percorso guidato
10:30
Ray Nature of Light

Spring Constant

The spring constant, denoted as 'k', is a measure of a spring's stiffness, defined as the force required to compress or extend the spring by a unit distance. In this scenario, it represents the effective stiffness of the musculature that holds the eyeball in its socket. A higher spring constant indicates a stiffer system, which would resist displacement more than a system with a lower spring constant.
Video consigliato:
Percorso guidato
08:59
Phase Constant of a Wave Function

Resonance

Resonance occurs when a system is driven at its natural frequency, resulting in increased amplitude of oscillation. In the case of the eyeball, when the head vibrates at 29 Hz, which matches the natural frequency of the eyeball, the vibrations cause the eyeball to oscillate more significantly. This phenomenon can lead to visual disturbances, as the eye's position changes rapidly, affecting its ability to focus.
Video consigliato:
Percorso guidato
05:23
Resonance in Series LRC Circuits
Pratica correlata
Domanda del libro di testo

Astronauts on the first trip to Mars take along a pendulum that has a period on earth of 1.50 s. The period on Mars turns out to be 2.45 s. What is the free-fall acceleration on Mars?

1990
views
Domanda del libro di testo

A 350 g mass on a 45-cm-long string is released at an angle of 4.5° from vertical. It has a damping constant of 0.010 kg/s. After 25 s, (a) how many oscillations has it completed and (b) what fraction of the initial energy has been lost?

1871
views
Domanda del libro di testo

Two 500 g air-track gliders are each connected by identical springs with spring constant 25 N/m to the ends of the air track. The gliders are connected to each other by a spring with spring constant 2.0 N/m. One glider is pulled 8.0 cm to the side and released while the other is at rest at its equilibrium position. How long will it take until the glider that was initially at rest has all the motion while the first glider is at rest?

1860
views
Domanda del libro di testo

When the displacement of a mass on a spring is (½)A, what fraction of the energy is kinetic energy and what fraction is potential energy?

2301
views
Domanda del libro di testo

In a science museum, a 110 kg brass pendulum bob swings at the end of a 15.0-m-long wire. The pendulum is started at exactly 8:00 a.m. every morning by pulling it 1.5 m to the side and releasing it. Because of its compact shape and smooth surface, the pendulum's damping constant is only 0.010 kg/s. At exactly 12:00 noon, how many oscillations will the pendulum have completed and what is its amplitude?

1450
views
Domanda del libro di testo

The amplitude of an oscillator decreases to 36.8% of its initial value in 10.0 s. What is the value of the time constant?

1718
views