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Gli3, Myc and ER each had three ChIP (IP) and three control (CT) samples available, and NRSF had two IP and two CT samples.
In general, the adsorption coefficient (Kf) was higher in the CT samples.
To validate the simulation results, LSP experiments were conducted on CT samples using two identified LSP patterns and the crack growth rates were tested.
However, at higher applied magnetic field strength of ±22,000 A/m, the MBN profile showed two peaks for both QT and CT samples for pick-up coils with peak frequency response up to ∼17 kHz.
In this study, a numerical method, combining finite element method (FEM) and residual stress intensity factor (SIF) analysis, was used to predict the effect of LSP pattern on the crack propagation behavior of the compact tension (CT) samples.
Ct samples were transformed into quantity values using the formula (1+Efficiency Ct.
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Fold enrichment % was calculated by simply using a ratio of amplification efficiency of the ChIP sample over that of non-immune IgG: fold enrichment % = 2 IgG Ct – Sample Ct) × 100%.
At lower applied magnetic field strength of ±14,000 A/m, all the pick-up coils produced a single peak MBN profile for both QT and CT sample.
After that, the simulation of LSP of CT sample was conducted using five representative cases, and the corresponding residual stress fields were obtained.
Also, there is systematic reduction in peak 2 for QT sample and asymmetric reduction in the heights of peak 1 and peak 2 for CT sample with increase in peak frequency response of the pick-up coils.
Δ Δ Ct = Δ Ct sample – Ct control gene.
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