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Before the analysis of the interacting systems, the instrument parameter set (such as skimmer voltages, trap drive, octopole RF amplitude, octopole delta, lenses voltages, capillary voltage, etc).
The ESI conditions were as follows: capillary voltage: 3.5 kV, endplate offset was fixed at 500 V; skimmer at 40 V; trap drive at 53 V; the nebulizer pressure was 70 psi and drying temperature was 350°C.
A skimmer potential of 58.0 V and a trap drive value of 112.0 was used.
The capillary voltage was set to 3270 V, capillary exit offset to 317 V, skimmer 1 potential to 41.5 V with a trap drive value 82.8.
The ion trap parameter was set as a smart mode: target, 400 amu (atom mass unit); compound stability, 100%; and trap drive level, 80%.
MS and MS/MS parameters are as follows: smart parameter setting with target mass set to 165 Da, compound stability 70%%, trap drive 50%%, capillary at 3500 V, fragmentation amplitude of 0.75 V with a 30 200 % ramped voltage implemented for 50 ms, and an isolation width of 2 m/z (He collision gas).
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First, the trajectory, r j, and velocity, v j, of an ion in a linear Paul trap, driven at rf frequency Ω, can be expanded as a linear superposition of two orthogonal Mathieu functions c(a j,q j ;τ) and s(a j,q j ;τ) with coefficients A j and B j, begin{aligned} r_{j} tau) &= A_{j}~c_{j} tau) + B_{j}~ s_{j} tau) v_{j} tau) &= A_{j} ~ dot{c}_{j} tau) + B_{j} ~ dot{s}_{j} tau) end{aligned} (1).
The sporozoite invasin TRAP drives sporozoite motility and target cell entry whereas the adhesin MAEBL mediates sporozoite recognition of and attachment to salivary glands.
It has been shown that rn89 GAL4 enhancer trap driven GFP expression recapitulates the endogenous RNA expression pattern in situ in third instar larval antennal discs (Li et al. 2013; St Pierre et al. 2002).
Regional fractured network in deeper formation below these traps were induced by hydrothermal and hydrocarbon-generating overpressure, and connected source rock to reservoirs; therefore, gas could migrate to lithology-stratigraphic traps driven by buoyance and overpressure to be accumulated finally.
Our results illustrate that dipterans have broadly evolved the use of a habitat selection behaviour that treats more strongly polarized light sources as indicative higher-quality habitats, making them broadly susceptible to ecological traps driven by polarized light pollution.
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