displaystyle2ln4-ln2=ln8 Explanation:Asdisplaystylealnb=lnb^aanddisplaystylelnp-lnq=lnleft(fracpq ight) ...

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displaystylealn4-lnb=lnleft(frac4^ab ight) Explanation:We can condense using identitiesdisplaystylelog_ap_1+log_ap_2+log_ap_3+..+log_ap_n=log_aleft(p_1cdotp_2cdotp_3cdotldotscdotp_n ight) ...
Tiger was unable to solve based on your input ln2-ln1 Logarithms not yet implemented ... V ln2-ln1 Logarithms not yet implemented ........ V ln2-ln1 Program Execution Terminated Tiger ...
I would write -ln 4 simply because it is typographically simplest -- it needs neither superscripts nor fractions -- and not obviously harder to understand than the others. (But I would at least ...
You can construct just such an asymptotic approximation, but note that you can rewrite it in terms of the difference from (say) BIC_0 (or indeed any convenient constant). This can help avoid ...

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Two options: One way to get the amplitude at an arbitrary frequency (say 5.3 Hz) would be to resample the signal at a sampling rate such that the base frequency calculated by the wavelet transform ...
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left< eginarray l l 2 & 3 \ 5 & 4 endarray ight> left< eginarray l l l 2 & 0 & 3 \ -1 & 1 & 5 endarray ight>

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