A parallel-plate capacitor with circular plates of radius R is being charged as in Figure (a). Derive an expression for the current density of the displacement current J, for rs R. State your answers in terms of Eo, E, and t. •2 X x x B 冷× × B. xー× X X X (a) (b) E J = Edit
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- Question 3 and 4Two long thin parallel wires 13.0 cm apart carry 35 A currents in the same direction. Figure 13.0 cm- • 6.0 cm-- 10.0 cm- ▼ ▼ Part A Determine the magnitude of the magnetic field vector at a point 10.0 cm from one wire and 6.0 cm from the other (see the figure(Figure 1)). Express your answer using two significant figures. B= Submit Part B 0= |Π| ΑΣΦ Submit Request Answer Determine the direction of the magnetic field vector at a point 10.0 cm from one wire and 6.0 cm from the other. Express your answer using two significant figures. ΠΫΠΙ ΑΣΦ Provide Feedback Request Answer ? PANC T ? 0 above the x-axisPhysics 212 - Module 5 Hands On Activities Packet 2. A mass spectrometer is used to determine the mass of the ions in a sample. Once the mass of the ions are known one can determine what molecular composition of the sample. The Behrend chemistry department has several mass spectrometers. A new singly charged ion (the sign of the charge is unknown but we know it is either te or-e) enters a velocity selector as shown with crossed electric and magnetic fields of magnitude E and B. Only ions with the selected speed then leave through the right hole and enter a region with the same magnetic field B but no electric field. The magnetic force then causes the charges to move in a semi-circular path of radius r as shown. By measuring r one can determine the mass of the ions. a. Is the ion positive or negative? • 8 times as large • a factor of √2 as large • 1/2 as large b. Determine the mass of the ion in terms of e, B, E and/or r. Show work. Note: your answer should not contain the speed v. .8…
- Please find give me the same wrong answer Thank youUse Gauss's Law for magnetic fields to determine if the following vector field A(r,0,0) - expressed in spherical coordinates - could represent a magnetic field: 1 Ã(r, 0, 6) = f+ 6rn – 6rø(cos 0)§. %3D - r2c) Write the Kirchhoff's potential difference rule for left and right loops by drawing your chosen current directions and loop directions. El R1 R2 R3 -82