Longitudinal resistance of 2D electrons as function of magnetic field and temperatures.
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File Fig1. This dataset contains resistivity rho_xx in Ohms for a device under varying magnetic field at different temperatures and gate voltage Vg=0V. The current was I=10^-6 A. Resistivity is calculated, using the formula rho-xx=V/I/k , where V is measured voltage, I is current and k=5 is geometric factor. The data is structured in a CSV file where: The odd column lists magnetic field in Tesla (T) The even column lists resistivity in Ohms. The first raw labels magnetic field and resistivity The second raw labels unit The third raw labels the temperature of experiments File Fig2. This dataset contains resistivity rho_xx in Ohms for a device under varying magnetic field at different temperatures and gate voltage Vg=-1.2V. The current was I=10^-6 A. Resistivity is calculated, using the formula rho-xx=V/I/k , where V is measured voltage, I is current and k=5 is geometric factor. The data is structured in a CSV file where: The odd column lists magnetic field in Tesla (T) The even column lists resistivity in Ohms. The first raw labels magnetic field and resistivity The second raw labels unit The third raw labels the temperature of experiments



