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significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
significant factor » significant factors (Expand Search)
factor decrease » factors increases (Expand Search)
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3061
A Hydrate-Bearing Sediment Gas Replacement Mechanical Behavior Regulation Mechanism and Slope Stability Analysis
Published 2025“…As saturation increases, the Γ value of the critical state line decreases, while the λ value increases. (3) For slope simulations, increased hydrate saturation significantly raises the safety factor for gentler slopes, while the reinforcing effect of gas replacement is weaker for steeper slopes with higher saturation.…”
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3062
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3063
Mechanism of hydrocephalus formation involving inflammation after IVH.
Published 2025“…When NF-κB is inhibited after ventricular hemorrhage, a significant reduction in the size of the bilateral lateral ventricles is observed, along with a slowed CSF secretion rate and decreased expression of NF-κB and AQP1 proteins in CPEs. …”
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3064
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3065
Flowchart of the suggested SOA.
Published 2025“…In the initial phase, the Loss Sensitivity Factor (LSF) is employed to identify the most suitable nodes for integrating RDGs. …”
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3066
Flowchart of the suggested SSA methodology.
Published 2025“…In the initial phase, the Loss Sensitivity Factor (LSF) is employed to identify the most suitable nodes for integrating RDGs. …”
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3067
Egyptian case study 15-bus MEDN system.
Published 2025“…In the initial phase, the Loss Sensitivity Factor (LSF) is employed to identify the most suitable nodes for integrating RDGs. …”
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3068
Flowchart of marine predator algorithm.
Published 2025“…In the initial phase, the Loss Sensitivity Factor (LSF) is employed to identify the most suitable nodes for integrating RDGs. …”
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3069
Flowchart of I-GWO.
Published 2025“…In the initial phase, the Loss Sensitivity Factor (LSF) is employed to identify the most suitable nodes for integrating RDGs. …”
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3070
Convergence trends for IEEE 33-bus test system.
Published 2025“…In the initial phase, the Loss Sensitivity Factor (LSF) is employed to identify the most suitable nodes for integrating RDGs. …”
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3071
The updating positions of IGWO.
Published 2025“…In the initial phase, the Loss Sensitivity Factor (LSF) is employed to identify the most suitable nodes for integrating RDGs. …”
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3072
The optimized results of the Egypt MEDN 15-Bus.
Published 2025“…In the initial phase, the Loss Sensitivity Factor (LSF) is employed to identify the most suitable nodes for integrating RDGs. …”
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3073
IEE 33-bus system RDG units at optimal locations.
Published 2025“…In the initial phase, the Loss Sensitivity Factor (LSF) is employed to identify the most suitable nodes for integrating RDGs. …”
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3074
SLD of 118-Bus RDS [
Published 2025“…In the initial phase, the Loss Sensitivity Factor (LSF) is employed to identify the most suitable nodes for integrating RDGs. …”
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3075
Migration and attacking prey.
Published 2025“…In the initial phase, the Loss Sensitivity Factor (LSF) is employed to identify the most suitable nodes for integrating RDGs. …”
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3076
Description of the behaviour of GWO.
Published 2025“…In the initial phase, the Loss Sensitivity Factor (LSF) is employed to identify the most suitable nodes for integrating RDGs. …”
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3077
The optimized results of the 118-Bus.
Published 2025“…In the initial phase, the Loss Sensitivity Factor (LSF) is employed to identify the most suitable nodes for integrating RDGs. …”
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3078
Single line diagram of RDN.
Published 2025“…In the initial phase, the Loss Sensitivity Factor (LSF) is employed to identify the most suitable nodes for integrating RDGs. …”
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3079
Supporting information.
Published 2025“…In the initial phase, the Loss Sensitivity Factor (LSF) is employed to identify the most suitable nodes for integrating RDGs. …”
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3080
LSF for 118 Bus.
Published 2025“…In the initial phase, the Loss Sensitivity Factor (LSF) is employed to identify the most suitable nodes for integrating RDGs. …”