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It has been hypothesized that highly triaxial residual stress fields may be sufficient to promote creep damage in thermally aged components, even in the absence of in-service loads.
Based on these observations, it has been hypothesized that highly pathogenic avian viruses cause a "cytokine storm" which results in detrimental immune responses, although this has recently been questioned in connection with H5N1 virus [53].
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It is hypothesized that highly specific antibody-conjugated SPIO would enable MRI of inflamed endothelial cells.
Previously, it was hypothesized that highly acute toxic compounds have little room to increase through prolonged exposure times [2].
It is hypothesized that highly expressed genes may experience strong selective forces toward gene compactness, due to the energetic costs associated with transcription processes (4, 5).
On the other hand, it can be hypothesized that highly exposed or distressed survivors would be less likely to respond because they do not want to be reminded of the stressful event.
Therefore, it was hypothesized that: H1.
Because sea ice has only been extensive on Earth since the mid-Eocene, it has been hypothesized that bacteria highly adapted to inhabit sea ice have traits that have been acquired through horizontal gene transfer (HGT).
Due to high lipid content, rapid metabolic rate and decreased levels of antioxidant enzymes in the nervous system, it has been hypothesized that the nervous system may be highly susceptible to damage by B[a]P [32], though the exact mechanism that leads to damage to neurons in the central nervous system (CNS) is yet to be elucidated.
It has been hypothesized that ballooning may allow populations to persist in the highly disturbed agricultural areas that the spiders prefer.
It has been hypothesized that reducing sunlight by only 1% should eliminate this problem.
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CEO of Professional Science Editing for Scientists @ prosciediting.com