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Recent experiments exhibit a rate-dependence for granular shear such that the stress grows linearly in the logarithm of the shear rate, dot{gamma}. Assuming a generalized activated process mechanism, we show that these observations are consistent wit h a recent proposal for a stress-based statistical ensemble. By contrast, predictions for rate-dependence using conventional energy-based statistical mechanics to describe activated processes, predicts a rate dependence that of (ln (dot{gamma}))^{1/2}.
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