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The phrase "investigate structure" is grammatically correct and can be used in written English.
It is typically used to refer to the act of analyzing and examining the organization or construction of something, such as a building, a piece of writing, or a system. Example: The architect was hired to investigate the structure of the old church, looking for any structural weaknesses or flaws that needed to be addressed in the renovation process.
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We investigate structure compilation, where we replace structure with features, which are often computationally simpler but unfortunately statistically more complex.
The Ecoacoustic Event Detection and Identification (EEDI) system is a recent methodology to investigate structure and dynamic of soundscapes.
Optical microscopy (OM) and field emission scanning electron microscopy (FE-SEM) were used to investigate structure of the coatings.
Powder X-ray diffraction, field emission scanning electron microscopy, and transmission electron microscopy are used to investigate structure and morphologies of the obtained products.
In this study, we investigate structure and mechanical properties of eggshells of Taiwan cobra snake (Naja atra) and Chinese striped-neck turtle (Ocadia sinensis).
on protein dynamics, MD has become the by foremost well established, computational technique to investigate structure and function of biomolecules and their respective complexes and interactions.
Similar(43)
Uses practical examples to investigate structure-property relationships.
Mechanical stimulation in tissue engineering is proposed as a viable experimental technique to investigate structure-properties relations to design vital/avital composites.
In this work, four donor acceptor structure triphenylamine (TPA) - acridine (AC) isomers (TPA-9AC, TPA-1AC, TPA-2AC and TPA-3AC) were designed and synthesized to investigate structure-property relationship between isomerization effect and excited state properties.
In this contribution, we will capitalize on our recent development of finite supramolecular nanofibers based on the self-assembly of modularly designed cationic multidomain peptides (MDPs) and use them as a model system to investigate structure-dependent cell penetrating activity.
Here, we chose carbon nanotubes (CNTs), graphene nanoribbons (GONRs) as models for 1D and quasi 1D carbon nanomaterials, and partially unzipped CNTs (PUCNTs) as an intermediate material, to investigate structure-dependent electrocatalysis of 1D carbon nanomaterials.
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