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The wavelength of middle C (262 Hz) in air at standard temperature and pressure is approximately 1.30 meters. Wavelength is calculated using the formula λ = c / f, where λ is the wavelength, c is the speed of sound (343 m/s at STP), and f is the frequency of the wave.

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What is the wavelength of middle C on a piano as it travels through air at standard temperature and pressure (the key of C is at 262 Hz)?

The wavelength of middle C on a piano at 262 Hz in air at standard conditions of temperature and pressure is approximately 1.29 meters. This can be calculated using the formula: wavelength = speed of sound / frequency. At standard conditions, the speed of sound in air is around 343 meters per second.


What factors effect the refractive index of a liquid?

The refractive index of a liquid is influenced by its chemical composition, temperature, and pressure. Additionally, the wavelength of light passing through the liquid can also affect its refractive index.


How do you change wavelength?

To change the wavelength of light, it is typically necessary to change the medium through which the light is passing. This can be done using materials that exhibit different refractive indices or by changing the physical conditions of the medium, such as temperature or pressure. In some cases, using specialized optical components like prisms or diffraction gratings can also be used to manipulate the wavelength of light.


A sound wave with a frequency of 260 Hz has a wavelength of 1.30m what is the speed of the wave?

Speed of the wave = frequency x wavelength So c = 260 x 1.30 = 338 m/s +++ IN air at standard temperature & pressure. That is important because the speed varies with the density of the medium through which it travels. In sea-water the mean speed of sound is just under 1500m/s, varying slightly with salinity and temperature hence density.


What is the wavelength of 680 Hz tone moving through air?

The wavelength of a 680 Hz tone moving through air can be calculated using the formula: wavelength = speed of sound / frequency. The speed of sound in air at room temperature is approximately 343 m/s. Therefore, the wavelength of a 680 Hz tone in air would be about 0.504 meters (504 mm).

Related Questions

What is the wavelength of middle C on a piano as it travels through air at standard temperature and pressure (the key of C is at 262 Hz)?

The wavelength of middle C on a piano at 262 Hz in air at standard conditions of temperature and pressure is approximately 1.29 meters. This can be calculated using the formula: wavelength = speed of sound / frequency. At standard conditions, the speed of sound in air is around 343 meters per second.


What is the wavelength of middle C on a piano as it travels through air at standard temperature and pressure (The key of C is at 262 Hz) Calculate your answer to the nearest tenth of a meter.?

1.30


What is the wavelength of middle C on a piano as it travels through air at standard temperature and pressure when The key of C is at 262 Hz Calculate your answer to the nearest tenth of a meter?

45 centimeters


What sample of matter sublimes at room temperature and standard pressure?

Dry ice (solid carbon dioxide) sublimes at room temperature and standard pressure, meaning it changes directly from a solid to a gas without passing through the liquid phase.


What factors effect the refractive index of a liquid?

The refractive index of a liquid is influenced by its chemical composition, temperature, and pressure. Additionally, the wavelength of light passing through the liquid can also affect its refractive index.


What are the factors that affect refractive index?

The main factors that affect refractive index are the wavelength of light, the medium through which the light is passing, and the density of the material. Refractive index is also influenced by temperature and pressure.


How do you change wavelength?

To change the wavelength of light, it is typically necessary to change the medium through which the light is passing. This can be done using materials that exhibit different refractive indices or by changing the physical conditions of the medium, such as temperature or pressure. In some cases, using specialized optical components like prisms or diffraction gratings can also be used to manipulate the wavelength of light.


How does temperature effect a volume air?

Temperature is not directly tied to volume, its related to pressure. Increasing the temperature will increase the pressure--only if volume is held constant. That is were volume and temperature are related, through pressure. However, if you increase the volume it does not change the temperature.


A sound wave with a frequency of 260 Hz has a wavelength of 1.30m what is the speed of the wave?

Speed of the wave = frequency x wavelength So c = 260 x 1.30 = 338 m/s +++ IN air at standard temperature & pressure. That is important because the speed varies with the density of the medium through which it travels. In sea-water the mean speed of sound is just under 1500m/s, varying slightly with salinity and temperature hence density.


When you descend through the earth what two things change?

Temperature and Pressure.


What kind of rock forms through high temperature and pressure?

crystals


How do you change high temperature refrigerant and high pressure refrigerant in to low temperature refrigerant and low pressure refrigerant?

You cool it and run it through a metering devise.