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The distributed soils data in Case III demonstrated the model ability of predicting groundwater levels.
We have demonstrated the model both hypothetically (BSM2), and practically on a full-scale anaerobic digester treating sewage sludge.
At the same time, the adjusted determination coefficient (adj-R2 = 0.9626), which was very close to R2, which demonstrated the model was extremely significant.
Simulated flow maps in this basin also demonstrated the model capability in capturing both the spatial and temporal variations in the runoff process.
Using this versatile puromycin-linker, we demonstrated the model in vitro selection of the FLAG epitope and a SPR-based assay to measure the dissociation constant between the B domain of protein A and immunoglobulin G. Improvement of the puromycin-linker as described herein should make the cDNA display method easier to utilize for design of protein or peptide based affinity reagents.
As previously demonstrated, the model provides the dose-dependent inhibition needed to prevent exponential amplification (Townsend and Hartl, 2000; Figure 7D,E).
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The modeler, as part of the contract, should demonstrate the model reliably predicts existing temperature conditions.
I didn't see how we'd be able to demonstrate the model without meat processing.
Figure 2 briefly demonstrates the model of relay selection.
Simple test cases demonstrate the model's performance.
Bimodal distribution of the water levels demonstrates the model's response to seasonal variations.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com