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Essentially, there are two possibilities: either the probability for producing superparticles at the LHC is smaller than in the simple models that have mostly been studied so far, or the superparticle decay pattern is different, such that the standard experimental searches do not capture the specific signatures.
Finally, we present simple models that assume rectangular faults for the mainshock and aftershocks.
This method is based on simple models that are easy to understand and implement in numerical codes.
Therefore, there is also a need for simple models that are easy to apply but still capture the main features of the underlying processes.
We also discuss other simple models that are in agreement with the Planck data within a renormalizable model of warm inflation.
The numerical model, which explicitly considers the combined effect of several loss mechanisms as they interact, is compared to simple models that consider these effects separately.
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We developed a simple model that provides forecasts that are 12 times more accurate than warming-alarm forecasts for 90 to 100 years ahead.
We subsequently present a simple model that takes these points into consideration.
Also, a simple model that considers the irreversible strain due to the damage was proposed.
The present work proposes a simple model that predicts this kind of behavior.
This is seen as a very simple model that does not explain complex interrelations between business, society, and the environment.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com