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This paper offers an overview of the Dutch approach for assessing the environmental impacts of building materials and demonstrates its practical application.
The resulting model compares well with the available experimental data for ceramics and geologic materials, and demonstrates specific scaling of strength with strain rate for compressive behavior.
The Haväng site shows the strong potential of submerged landscapes as palaeoecological source materials, and demonstrates the importance of resources at coastal settings near river mouths for Mesolithic communities.
The comparison shows that the statistical two-scale computational method developed is useful for determination of the heat transfer properties of porous materials and demonstrates its potential applications in actual engineering computation.
It reviews the morphologies and functions of the nanostructures in natural tissues, introduces the methods to produce biomimetic nanostructured materials and demonstrates the improvement of tissue engineering by utilizing such nanostructured biomaterials.
This paper presents a microstructure-guided modeling approach to predict the effective elastic response of heterogeneous materials, and demonstrates its application toward two highly heterogeneous, unconventional structural binders, i.e., iron carbonate and fly ash geopolymer.
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We use 2P excitation to study the minority carrier lifetimes of PV materials and demonstrate the first use of depth-of-focus, 2P-TRPL for PV.
Students will be able to select site-appropriate plant materials and demonstrate technically how to develop construction documents for contractor bidding and installation, integrating writing, visual representation and design presentation skills.
In this study, we mimicked nature by using a biomineralization approach for controlling the growth of inorganic materials and demonstrated improved ORR values.
We focus on water-based materials and demonstrate our approach by additively manufacturing diverse constructs associating shape-informing variable flow rates and material properties to mesh-free geometric primitives.
For the microscopic behaviors of atoms under mechanical shocks, Holid and co-workers [49 51], Kadau et al. [52], and Bringa et al. [24] studied the shock wave propagation in solid materials and demonstrated its existence in nanoscale materials.
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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