3. You are working on a research team that is designing drones to take gas samples of Earth's ionosphere, approximately
Posted: Tue Apr 26, 2022 7:43 pm
PLease include a diagram with your answer.
3. You are working on a research team that is designing drones to take gas samples of Earth's ionosphere, approximately 1 km above Earth's surface. There are strong magnetic and electric fields in this region, and you need to make certain the drone's circuitry is robust to these fields. To generalize this problem, you model a simple circuit consisting of a capacitor of known capacitance and a resistor of known resistance. The capacitor and resistor are in series in a closed loop. In your model, the drone carries the circuit into a region of magnetic field lines that are parallel to each other and oriented to induce the greatest possible EMF in this circuit. You model the magnitude of this B-field to be the maximum possible you might expect in this region of the atmosphere. Your job on the team is to determine the induced EMF and the charge stored on the capacitor as functions of time as the drone flies into this region of intense magnetic field.
3. You are working on a research team that is designing drones to take gas samples of Earth's ionosphere, approximately 1 km above Earth's surface. There are strong magnetic and electric fields in this region, and you need to make certain the drone's circuitry is robust to these fields. To generalize this problem, you model a simple circuit consisting of a capacitor of known capacitance and a resistor of known resistance. The capacitor and resistor are in series in a closed loop. In your model, the drone carries the circuit into a region of magnetic field lines that are parallel to each other and oriented to induce the greatest possible EMF in this circuit. You model the magnitude of this B-field to be the maximum possible you might expect in this region of the atmosphere. Your job on the team is to determine the induced EMF and the charge stored on the capacitor as functions of time as the drone flies into this region of intense magnetic field.