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Mass loss increased with the initial impact reaction probability increasing and decreased with the thermal assimilation coefficient going down.
The method yields impact reaction forces and sliding distances and hence enables wear rate calculations to be performed.
As commonly practiced, costly calculation of the Boltzmann equation at every time step is avoided by pre-calculating electron impact reaction rate coefficients using a Boltzmann equation solver.
Pulsing frequency, which can significantly impact reaction, may be tuned by selecting appropriate packing size, since smaller sizes generate higher frequency pulses.
Here we evaluate the pre-calculated rates assumption, showing that ignition predictions depend on the gas composition at which the electron impact reaction rates are generated, but that induced errors are acceptable given the uncertainty in other model parameters such as impact cross sections.
Impact fragment with major FeSi (Ni) system can be formed under vapor condition of impact reaction from terrestrial and artificial impact craters and spherules, and those with NiCl (S) system in composi- tion are formed under vapor condition of artificial impact experiments on the Barringer iron meteorite.
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Cold Target Recoil Ion Momentum Spectroscopy (COLTRIMS) is a novel momentum space imaging technique for the investigation of the dynamics of ionizing ion, electron or photon impact reactions with atoms or molecules.
Tiny grains of FeNi system originated from planetesimals or meteoroids can remain under solid (or melt -solid imelt -solidimpactven aftereactionsproceven probaftertogether wimpactgh processe form of Fe probably
In addition to electron impact reactions, the present mechanism includes reactions involving vibrationally- and electronically-excited species, dissociative recombination reactions, three-body recombination reactions, charge transfer reactions, and relaxation reactions, taken from the literature where available, and otherwise calculated using published correlations.
The major electron-neutral molecule impact reactions included are (i) elastic, (ii) excitation, (iii) ionization (including all important ionization reactions) and (iv) electron attachment.
The major electron-neutral molecule impact reactions included are (1) elastic, (2) excitation, (3) ionization (including all important ionization reactions), and (4) electron attachment.
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