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 In <imgref imageNo7 >, it can be seen that the internal resistance of the linear current source measured by the ohmmeter (resistance meter) is exactly equal to that of the linear voltage source. In <imgref imageNo7 >, it can be seen that the internal resistance of the linear current source measured by the ohmmeter (resistance meter) is exactly equal to that of the linear voltage source.
  
-If you look at the properties of the ohmmeter in the simulation, you will see that a measuring current is used there to determine the resistance value. This concept will still be part of the electrical engineering lab experiment on [[elektrotechnik_labor:1._widerstaende|resistor]]s in the 2nd semester.+If you look at the properties of the ohmmeter in the simulation, you will see that a measuring current is used there to determine the resistance value. This concept will still be part of the electrical engineering lab experiment on [[elektrotechnik_labor:1_widerstaende|resistor]]s in the 2nd semester.
 However, a very large measuring current of $1A$ is used here. This could lead to high voltages or destruction of components in real setups. However, a very large measuring current of $1A$ is used here. This could lead to high voltages or destruction of components in real setups.
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