Examples of 'function of the frequency' in a sentence
Meaning of "function of the frequency"
function of the frequency: This phrase typically refers to how the rate, speed, or occurrence of something affects or determines a particular outcome or behavior
How to use "function of the frequency" in a sentence
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function of the frequency
Selective dissipation of the power as a function of the frequency.
This index is a function of the frequency of the incident sound.
The initial permeability was measured as a function of the frequency.
The function of the frequency lock element has been described above.
The variation of the velocity as a function of the frequency is called dispersion.
Each sub-band surrounds a different local extremum of the impedance module as a function of the frequency.
The set of ECUs is distributed as a function of the frequency of the suggested forms.
M is a corrective coefficient of sound absorption of the strip as a function of the frequency.
This skin depth δ is a decreasing function of the frequency f of the electromagnetic radiation.
The results are optimized by adjusting the couplings obtained as a function of the frequency.
This time delay is a function of the frequency at which the input command is applied.
The intensity of the measured acoustic signal is represented as a function of the frequency.
The assured range is a function of the frequency band used and the power allowed.
The complex viscosity and complex modulus were obtained as a function of the frequency.
The curves are a function of the frequency in Hz with respect to the impedance module Z.
See also
The Fourier transform of a function is a complex function of the frequency.
The transfer function of the frequency to voltage converter 8 is shown in Fig . 1.
The spectral analysis thus provides a PSD curve as a function of the frequency.
Here, one state variable is a function of the frequency which can thus be deduced.
The result was a variation of the phase shift B as a function of the frequency F.
The transfer function of the frequency converter system is schematically shown in FIG . 10.
As a matter of fact, this signal decreases evenly as a function of the frequency.
Two cases are presented as a function of the frequency of the activity,.
FIG . 5 shows various examples of the magnetic permeability as a function of the frequency.
FIG . 3 illustrates the permeability as a function of the frequency for these two ferrite materials.
FIG . 1 illustrates the recording level correction and signal reproduction curves as a function of the frequency.
In general, the susceptibility is a function of the frequency ω of the applied field.
FIG . 3 represents the signal SE transmitted by the transmitter 10 as a function of the frequency.
Its permeability spectrum as a function of the frequency is given in FIG . 2.
Moreover, the threshold S 1 chosen is not constant, but varies as a function of the frequency.
Hence, the filter response changes as a function of the frequency of the signal.
The graph B in figure 3 illustrates the phase sequence as a function of the frequency.
FIG . 2 shows an attenuation curve as a function of the frequency of the incident wave.
FIG . 1 diagrammatically shows such a noise spectrum as a function of the frequency.
Curve A of FIG . 2 b shows the transmission as a function of the frequency of the transmitted signal.
FIG . 4 shows the voltage variation of said circuit as a function of the frequency.
Of the spectrums are in arbitrary units and shown as a function of the frequency F [ Hz ].
In FIG . 4, the capacitance errors can be seen as a function of the frequency.
FIG . 5 shows the gain of the antenna as a function of the frequency.
The unit 6 memorizes each of the values of Vd ( f ) as a function of the frequency f.
And a second law providing an energy consumption E ( f ) as a function of the frequency ( f ).
The impedance is in turn displayed on an LCD display 310 as a function of the frequency.
From this reduced curve the loss compliance ( J " ) is calculated as a function of the frequency.
From this reduced curve the loss compliance ( J " ) is calculated as s function of the frequency.
A 300 Vdc bus voltage was maintained and the results are provided as a function of the frequency.
A curve 303 describes an intensity of the non-time-warped audio signal as a function of the frequency f.
FIG . 4 shows the singular values σ n ( f ) as a function of the frequency.
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