Abstract The single phase equivalent circuit is largely used to model the three-phase induction motors in steady-state operation and under sinusoidal balanced voltages.Depending on the desired Studio Monitor Parts application, the circuit may or may not represent core losses, a double cage or even the variation of parameters due to skin effect and
Review and characterization of the 2014 Orkney damage datasets for damage pattern mapping and fragility curve construction
The 2014 Orkney earthquake caused significant damage to unreinforced masonry buildings in the surrounding townships.After the earthquake, field surveys were conducted to assess the extent of damage in the affected areas.This study reviews data collected from the 2014 Orkney earthquake to investigate damage patterns, evaluate building safety for occ
Relationship of cytokines and cytokine signaling to immunodeficiency disorders in the mouse
The contributions of cytokines to the development and progression of disease in a mouse model of retrovirus-induced immunodeficiency (MAIDS) are controversial.Some studies have indicated an etiologic role for type 2 Utensils cytokines, while others have emphasized the importance of type 1 cytokines.We have used mice deficient in expression of IL-4,
T4SS Effector Protein Prediction with Deep Learning
Extensive research has been carried out on bacterial secretion systems, as they can pass effector proteins directly into the cytoplasm of host cells.The correct prediction of type IV protein effectors secreted Food Service:Commercial Kitchen Equipment:Food Preparation Equipment:Prep Tables:Work Tables by T4SS is important, since they are known to p
Photoactivity of Titanium Dioxide Foams
TiO2 foams have been prepared Studio Monitor Parts by a simple mechanical stirring method.Short-chain amphiphilic molecules have been used to stabilize colloidal suspensions of TiO2 nanoparticles.TiO2 foams were characterized by X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), UV-vis absorption spectroscopy, and scanning electron mi