Nonetheless, the sampling rate for most of the instruments was only once every 75 seconds.
A lower value of n will also lead to a useful sampling rate.
Most use a sampling rate of at least 30 Hz.
The calculation is relatively immune to the sampling rate used.
Even high sampling rates, however, cause some reduction in sound quality.
The first image is uploaded at its original sampling rate.
Many of them had lower sampling rates, but not so significant that most consumers would notice.
One reason for the improved quality was a higher digital sampling rate.
In digital technology, the higher the sampling rate, the better the sound.
It all has to do with their sampling rate.
The sample rate is even more important a consideration than the word size.
The bit depth will not limit frequency range, which is limited by the sample rate.
Instruments are not limited to a fixed sample rate for a given note.
The format stores the instrument's sample rate at middle C.
A sample rate of at least 8kHz is needed and the microprocessor can be any 8-bit variety with simple software.
Other metrics on the quality of the system are defined by the sample rate and bit depth.
How can material be converted from one sample rate to the other?
Therefore, the corresponding sample rate can be increased by a factor 3.
I did not see it in the conclusions and surely the sample rate is too low to judge.
Use any sample rate supported by an Asio sound card.
The higher the sampling frequency is, the more accurate the resultant samples will be.
This minimum sampling frequency is called the Nyquist rate.
The second is that a series of photographs may be taken at a high sampling frequency or frame rate.
The sampling frequency should be not less than the Nyquist rate to avoid aliasing.
When the new samples are played at the original sampling frequency, the audio clip sounds faster or slower.
The sampling frequency of the combined audio/video signal was about 2.7MHz.
In general, faster is better, though a higher sampling frequency does use more storage space.
The sampling frequency of water depends under regulations upon population density.
In practice, the sampling frequency is often significantly more than twice that required by the signal's limited bandwidth.
Thus, depending on the penalty of making an error and the sampling frequency, one might set the thresholds more aggressively.