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Both effects cause reduced catchment runoff.
These effects cause changes in the eigenfrequencies of the cavity.
In contrast, pressure effects cause a progressive decrease in HB clustering.
The nodal flow effects cause the flow fingering into the high permeability region.
The knock-on and the compound effects cause more PDL and FPDL.
Advection and inflow effects cause forest edges to experience enhanced dry deposition of atmospheric pollutants.
Sea water is highly corrosive to most materials, and severe electrochemical effects cause rapid disintegration of submerged metals that are unprotected.
In addition, these effects cause the leading edge position of the flame front to oscillate, even for infinitely fast chemistry.
Experimental results showed that LEO environment and its synergistic effects cause considerable damage to the surface of composites.
We show that these effects cause significant shifts in the isotopic signals and may lead to overestimation of biodegradation.
In many simulations these effects cause large oscillations of the velocity close to the interface, so-called spurious velocities.
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