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The brittleductile transition in silicon II Interpretation
A study of the leakage of surface electromagnetic fields through holes
Mixing entrainment and fractal dimensions of surfaces in turbulent flows
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activation energies active isolation amplitude analysis approximation asymptotic attenuation attractor beam behaviour bifurcation boundary brittle calculated cancellation chaotic chaotic attractor Combustion Combustion Institute components consider constant control forces convection corresponding crack front crack tip critical value curves density derived dislocation dispersion curves disturbance ductile effect estimate experimental experiments factor field finite flame flexural wave flow fluid fractal dimension fracture stress frequency given hyperplane increase integral equation interface layer linear longitudinal roll matrix measured metal methane mode mole fractions nucleation observed obtained occurs orbitals parameter partial differential equations Phys plastic zone plate positive potential precrack predicted problem pulse radiolysis reaction region resonant response Reynolds number sensor shear stress shown in figure shows silicon singular solution space-time species specimen spin stability strain rate structure temperature transfer functions transverse roll turbulent Tutton unstable vanadium varicose vector velocity vibration wave surface wavenumber zero