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	Fix typo
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				@ -379,20 +379,20 @@ Several of the measurements highlight the measurement region on the spectrum. Th
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The peak measurement displays the power and frequency of the FFT bin with the highest magnitude.
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					The peak measurement displays the power and frequency of the FFT bin with the highest magnitude.
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<h5>Channel Power</h5>
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					<h5>Channel Power</h5>
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Channel power measures the total power within a user-defined bandwidth, at the center of the spectrum:
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					Channel power measures the total power within a user-defined bandwidth, at the center of the spectrum:
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<h5>Adjacent Channel Power</h5>
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					<h5>Adjacent Channel Power</h5>
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The adjacent channel power measurement measures the power in a channel of user-defined bandwidth at the center of the spectrum and compares it to the power in the left and right adjacent channels.
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					The adjacent channel power measurement measures the power in a channel of user-defined bandwidth at the center of the spectrum and compares it to the power in the left and right adjacent channels.
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Channel separation is specifed in the 'Spacing' field.
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					Channel separation is specifed in the 'Spacing' field.
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<h5>Signal to Noise Ratio</h5>
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					<h5>Signal to Noise Ratio</h5>
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@ -402,7 +402,7 @@ The bandwidth of the signal is assumed to be the width of the largest peak, whic
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Noise is summed over the full bandwidth (i.e all FFT bins), with the fundamental and user-specified number of harmonics being replaced with the noise median from outside of these regions.
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					Noise is summed over the full bandwidth (i.e all FFT bins), with the fundamental and user-specified number of harmonics being replaced with the noise median from outside of these regions.
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The noise median is also subtracted from the signal, before the SNR is calculated.
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					The noise median is also subtracted from the signal, before the SNR is calculated.
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<h5>Signal to Noise Floor Ratio</h5>
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					<h5>Signal to Noise Floor Ratio</h5>
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@ -426,7 +426,7 @@ SINAD is measured as per SNR, but the result is the ratio of the fundamental to
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SFDR is a measurement of the difference in power from the largest peak (the fundamental) to the second largest peak (the strongest spurious signal).
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					SFDR is a measurement of the difference in power from the largest peak (the fundamental) to the second largest peak (the strongest spurious signal).
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<h2>3D Spectrogram Controls</h2>
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					<h2>3D Spectrogram Controls</h2>
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