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The b is connected with quality factor Q with Equation 2, where β denotes wave velocity.
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The thin lines are more consistent with drawings on land while the thicker lines denote wave patterns in the sea.
Here, k m = k + mk h denotes the wave number and ω is the angular frequency.
Here, c denotes the wave speed (m/s), w 0 denotes the carrier frequency (kHz), p u denotes the pulse width (ms), and b denotes the sweep rate (Hz/s).
The integrated quantities ({W_mathrm{int}}) during time interval (Delta t) are computed as follows: begin{aligned} W_mathrm{int} = sum _{i=1}^N q {{{varvec{E}}}_mathrm{w}(t_i)} cdot {{{varvec{v}}}_i},, end{aligned} (3)where ({{{varvec{E}}}_mathrm{w}}) denotes the wave electric field and (t_i) is the detection time for each particle.
The solid line denotes P-wave velocity, dashed line denotes S-wave velocity.
Here, ϕ denotes the wave-plate retardance.
Indeed, denote the wave speed as (a_{m}).
(17) Let (s := frac{1}{sqrt{LC}}), and let (Z:= sqrt{frac{L}{C}}) denote the wave impedance of the long line.
where ψ k (t) and ω k 0 denote a wave function and a bare-electron energy, respectively.
where k, λ, and d denote the wave number, the wavelength of a light source, and the reconstruction distance, respectively.
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