It is highly unlikely, such things are standardised
If two perfect spheres of different sizes have the same mass, then the larger ball has a lower density and the smaller ball has a higher density. This is because density is the amount of mass in a given volume, and density is obviously higher if there is a smaller volume for a given amount of mass.
the pitch; the smaller it is, the higher it sounds; the bigger it is, the lower it sounds
No. If a vibration is smaller, the sound is higher pitched. To get a quieter sound the amplitude of the sound-wave needs to be smaller. +++ It depends whether you mean amplitude or wavelength being "smaller", and they are two different things. If the vibration's amplitude is smaller the sound is quieter irrespective of frequency. If the vibration is more rapid, the frequency is higher but the wavelength correspondingly smaller irrespective of amplitude.
Electromagnetic waves of higher energy have a higher frequency and a smaller wavelength.Electromagnetic waves of higher energy have a higher frequency and a smaller wavelength.Electromagnetic waves of higher energy have a higher frequency and a smaller wavelength.Electromagnetic waves of higher energy have a higher frequency and a smaller wavelength.
The difference between different numbered cornet mouthpieces is the size of the mouthpiece. The higher the number on the mouthpiece the smaller the mouthpiece.
Accuracy is higher when the instrument has better precision, calibration, and a smaller margin of error. Additionally, accuracy increases when the instrument is properly maintained and used according to the manufacturer's guidelines.
It has a much smaller body, it is much higher pitched, it has only four strings, and it is tuned differently.
If the vibrating element is smaller, the pitch of the sound produced will be higher. This is because smaller vibrating elements have a higher frequency of vibration, resulting in a higher pitch sound.
Yes, smaller wavelengths correspond to higher frequencies. This relationship is defined by the wave equation: speed = frequency x wavelength. If the speed is constant, a smaller wavelength will result in a higher frequency.
Smaller bell, higher pitch
it is possible because the higher the frenqueny the higher the energy
The same as any other personal computer, the devices are made as small as possible. Making the parts smaller and able to handle constant movement make the prices higher.