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Its shortened head and other aspects of its unusual morphology have been subject of unsettled discussions since Darwin's time.
In addition, the processes of crystal nucleation, growth and crystal morphology have been analyzed.
The crystal structure, morphology have been characterized by XRD, FT-IR, SEM and TEM, respectively.
The material's structure and morphology have been extensively characterized with a variety of techniques.
Moreover, the effects of a compatibilizing agent on rheology and morphology have been analysed.
The constructed structures with unique morphology have been functionalized with hydroquinone derivatives as an electron mediator.
Foams with different cellular morphology have been obtained depending on nanoclay dispersion level and foaming conditions.
For transistor applications, polymer molecular conformation and thin film morphology have been shown to influence charge carrier mobility, and subsequently the device electrical properties3.
In contrast, nanocrystals exhibiting a needle-like morphology have been associated with mineralization processes that do not rely on organic matrices to regulate their growth18.
In-cylinder pressure, heat release, and flame morphology have been compared with experimental indicating and imaging data.
Hierarchical Ag mesostructures with highly rough surface morphology have been synthesized at room temperature through a simple seed-mediated approach.
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