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Secondly, a DTS-based test platform of soil-concrete joint, which can simulate the structural feature and service environment of dike engineering, is designed and constructed.
The results from temperature monitoring (within and beneath the charcoal stack) throughout the charcoaling process, geophysical surveys across the charcoal kiln platform, and laboratory analysis of soil and ash samples, are presented.
To further homogenize the experimental setup, only Affymetrix GeneChip platform and aboveground tissues of soil grown wild type (WT) plants were included.
In this work, we explore the feasibility of using this platform for digital soil mapping by presenting two soil mapping examples over the contiguous United States.
These findings provide an interesting platform for the management of soils with similar textural classes and different clay mineralogy, particularly when they are present in the same paddock across the landscape.
We thank the reviewers for their suggestion, however, we think the following title may be more appropriate: "GLO-Roots: an imaging platform enabling multidimensional characterization of soil-grown roots systems".
[Editors' note: further revisions were requested prior to acceptance, as described below.] Thank you for submitting your work entitled "GLO-Roots: an imaging platform enabling multidimensional characterization of soil-grown roots systems" for peer review at eLife.
Finally, a fascinating history of soil.
You dropped two handfuls of soil.
A dusting of soil went on top.
It is a major component of soil.
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