Write pages. Partial creu Question 1: Magnetic Fields A point charge of value q = 3.10μC has a speed of = 1.75 x 107-1-0.81 x 107k when it is at the point (0 cm, 0 cm, 0 cm). What is the magnetic field vector in component form at position (1cm, 1cm, 0cm)? Answer Magnetic Field Vector Ho 4π 10-7 T m² c.m S
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- Need HelpI need help with question 12?For this diagram, if each wire has current of 15A, how do we calculate the magnetic cforce imposed onto the top wire? How do we calculate the magnetic field in the center of the triangle? It would be great if someone could include the RHR stuff as well, with drawing direction of magnetic field for each point.
- The right edge of the circuit in the diagram extends into a 84.8 mT uniform magnetic field. What is the magnitude of the net force (in N) on the circuit? What is the direction of the force?Which of the following is true Left Right N I I 1. The left" of the electromagnet is its north end. The electromagnet will attract the permanent magnet. 2. The "left" of the electromagnet is its south end". The electromagnet will attract the permanent magnet. 3. The "left" of the electromagnet is its north end. The electromagnet will repel the permanent magnet. 4. The "left" of the electromagnet is its south end". The electromagnet will repel the permanent magnet.Magnetic field lines show the net magnetic field surrounding an object and it is possible for magnetic field lines to cross. True False
- Convert to a Differential equationSolve parts d , e & fDETAILS OSUNIPHYS1 28.6.P.049. MY NOTES ASK YOUR TEACHER PRACTICE ANOTHER The cross-sectional dimensions of the copper strip shown are 2.0 cm by 2.0 mm. The strip carries a current of 200 A, and it is placed in a magnetic field of magnitude 8 = 2.4 T. What are the value (in V) and polarity of the Hall potential in the copper strip? (Assume the charge carrier density of copper is 8.0 x 1028 electrons/m³). B 18. value polarity + The -Select- of the strip is at a higher potential. Additional Materials. Reading 2.0 cm X 2.0 mm Submit Answer
- 1. What is the magnetic field at P due to the current I in the wire shown? b. Write your answer in terms of 'µo', 'l', 'a', and 'b'. Remember to put a multiplication sign between variables. B=A magnetic field map shows A) the direction of the magnetic field. B) All of these choices are correct. C) a few representational field lines. D) relative strength of the magnetic field.4. Using Amphere's Law, Find the magnitude of the magnetic field at a radial distance, R1, inside the wire carrying a current , I,, and having an outer radius of R,. Ro