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The potential of the developed blend as a new cementitious material is highlighted in this study.
The effect of the drop height on the degradation of the composite material is highlighted, particularly the extent of the damaged area.
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A hybrid effect with an increase in the failure strain of the high modulus carbon material was highlighted for very thin plies.
The new class of metal@MOF materials is highlighted as practical nano-composites.
The importance of minimising water ingress into devices through cathode design and choice of materials is highlighted.
Furthermore, the benefits of using a stochastic rather than a deterministic approach to perform slope stability analyses in these heterogeneous materials is highlighted.
The utility of numerical models and optimized solutions for quality control, tailor-made concrete mixtures and selection of constituent materials is highlighted.
Finally, emerging research on using nano-clays in cement-based materials is highlighted and recommendations to resolve ambiguity related to the presence of clays in cement-based materials are proposed.
We determine the thermal conductivity of the materials studied with experimental equipment that allows us to make measurements of the thermal properties under actual use conditions (temperature and humidity) and also the study of the mechanical compressive strength of the materials studied and the interest in these materials is highlighted.
It provides tables, where numerous pipe materials are highlighted.
In addition, signaling principle states that learning is enhanced when essential materials are highlighted.
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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