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The generation of non-monochromatic whistler waves in the ELF range can be explained by the cyclotron resonance (Nakagawa et al. 2011; Tsugawa et al. 2012), although the mechanism has not been fully understood.
The observed frequency range can be explained by cyclotron resonance of the whistler waves with the protons reflected by the lunar surface; however, it is not known why they were not propagating parallel to the magnetic field.
The range can be explained by observing that the investigated animal group was heterogeneous with respect to age and weight and, more importantly, that the animal preparation (notably catheterisation and anaesthesia) does necessarily influence the individual animals differently.
This wide range can be explained by the marked heterogeneity in patient case mix: medical and surgical patients; solid and hematological cancer patients; allogeneic and autologous bone marrow transplant recipients; and patients with and without early limitation of active therapies [5, 16].
This broad range can be explained by patient inclusion criteria and different scoring methods for delirium.
Depending on the country, this range can be explained by the influence of several factors.
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The difference in the EIA width derived from different summation altitude ranges can be explained by the difference in horizontal distance between the tangential points in each summation range.
Sparse data in the range mode in section "Intensity of received pulses in range mode" can be explained by slight differences between the Time Index (TI) and UTC, as well as the motion of the spacecraft.
Confidence intervals for prevalence were not provided for any of studies, but the wide range of prevalence can be explained by the small sample size in each study.
In [11], the equilibrium fluctuation of the distance between an electron transfer donor and acceptor pair within a protein that spans a broad range of time scales can be explained by the generalized Langevin equation driven by fractional Gaussian noise.
As highly conserved proteins are likely to encode essential housekeeping functions, and therefore be subject to high levels of purifying selection, the noted correlation between the taxonomic range and QIPP score can be explained within this selective framework.
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