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To study defects in DNA replication, we examined yeast cells defective in DNA ligase Cdc9 (cdc9-1) (Johnston and Nasmyth, 1978).
As shown by the HRTEM study, defects like rotation twins and stacking faults exist in the samples, which might relax the q = 0 selection rule and lead to the frequency downshift and line-width broadening of the phonon peaks.
This technique is widely used to study defects in semiconductors and nanostructures with nanometer-scale spatial resolution.
In summary, we have demonstrated how confocal fluorescence microscopy can be a unique tool to study defects in MOF materials.
In one study, defects in neural tube closure were observed, whereas in another study, the TEAD2 null embryos appeared normal.
In the present study, defects were defined as simple defect (localized soft-tissue deficiencies) and complicated defects (irradiated defects or extensive soft-tissue deficiencies).
Similar(52)
Thermal responses were recorded to detect and study defect characterizations.
In this study, defect tracking is used as a proxy method to predict software readiness.
Here we study defect evolution during the synthesis of individual single-walled carbon nanotubes (SWCNTs) using in situ Raman spectroscopy.
In this study, defect-free zinc blende GaAs nanowires on Si (111) by molecular beam epitaxy (MBE) growth are systematically studied through Au-assisted vapor-liquid-solid (VLS) method.
Hybrid Monte Carlo molecular dynamics simulations are carried out to study defect distributions near Σ5(3 1 0)/[0 0 1] pure tilt grain boundaries (GBs) in nanocrystalline yttria-stabilized zirconia and gadolinia-doped ceria.
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