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We also found a NW-SE trending conductive belt (C4) in the Kitakami Mountains.
This conductive zone comprises a three-part structure: an inner conductive belt (1,000 m wide and 100 400 Ω m) that contains highly conductive streaks (∼20 Ω m) near the surface trace of the fault, and an outer area that is somewhat resistive but still low (∼ 1,000 Ω m) compared with the surrounding area (>10,000 Ω m).
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Because the nylon thread is not stretchable, we reserved some length in the soft belts to prevent conductive thread from breaking when the belts were stretched.
We can infer that the conductive anomaly of the Bothnian Belt continues further to the northwest (i.e., to the Gulf of Bothnia), although the blocks in this area were not directly constrained by the data.
In the northwest, facing the Gulf of Bothnia, the conductive anomaly referred to as the Bothnian Belt (BB) surrounds the less conductive Vaasa Dome or Vaasa Granitoid Complex (VGC).
The results showed highly conductive zones (2000 4000 Ohm−1), which form narrow and elongated belts that delineate moderately conductive and more homogeneous blocks (1000 2000 Ohm−1000 2000
Çankırı Basin matches with heterogeneously distributed conductive features, which are located south of the thrust belt.
In this study, we utilize Fe3O4 anode material (with granular and belt-like morphologies) and two kinds of conductive agent [i.e., granular AB and multi-walled carbon nanotube (MWNT)] as prototype systems to investigate their morphology impact on lithium storage performances.
Furthermore, the belt type sensor demonstrated that PVDF film and conductive fabric sensors can complement each other, especially in RRI extraction.
In summary, we utilize granular and belt-like Fe3O4 anode materials and two types of conductive agents (including AB and MWNT) as prototype systems to investigate their morphology impact on lithium storage performances.
The proposed algorithm is tested both on 16 h data acquired using the two sensors of our cardiorespiratory belt system, i.e., the polyvinylidene fluoride (PVDF) film and the conductive fabric sheets, and on all 48 records of the MIT/BIH Arrhythmia Database.
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