Multiple ChoiceAs a proton passes the origin, its velocity is 3.0×105m/sin the positive x direction. What is the magnitude of the magnetic field at the point (12.0cm, 5.0cm, 0.0cm)?
Multiple ChoiceAs a proton passes the origin, its velocity is 3.0×105m/s in the positive x direction. What is the direction of the magnetic field at the point (12.0cm, 5.0cm, 0.0cm)?
Multiple ChoiceA charged particle moving in a magnetic field has a force to the top of the page when it is moving toward the right and the field is into the page. Is this particle positive, negative or neutral?
Multiple ChoiceWhat is the force on an electron with velocity v⇀=(3.0×105ms)i^+(4.0×105ms)k^ in a region of space with magnetic field B⇀=(2.4×10−4T)i^?
Open QuestionThe circuit shown in Fig. E25.33 contains two batteries, each with an emf and an internal resistance, and two resistors. Find (b) the terminal voltage Vab of the 16.0-V battery
Open QuestionThe circuit shown in Fig. E25.33 contains two batteries, each with an emf and an internal resistance, and two resistors. Find (a) the current in the circuit (magnitude and direction)
Open QuestionThe current in a wire varies with time according to the relationship I = 55 A - (0.65 A/s^2)t^2. (b) What constant current would transport the same charge in the same time interval?
Open QuestionThe current in a wire varies with time according to the relationship I = 55 A - (0.65 A/s^2)t^2 . (a) How many coulombs of charge pass a cross section of the wire in the time interval between t = 0 and t = 8.0 s? (b) What constant current would transport the same charge in the same time interval?
Open QuestionAn idealized ammeter is connected to a battery as shown in Fig. E25.28. Find (c) the terminal voltage of the battery.
Open QuestionAn idealized ammeter is connected to a battery as shown in Fig. E25.28. Find (b) the current through the 4.00-Ω resistor.
Open QuestionAn idealized ammeter is connected to a battery as shown in Fig. E25.28. Find (a) the reading of the ammeter.
Open QuestionA proton moves along the x-axis with vₓ = 1.0 x 10⁷ m/s.. As it passes the origin, what are the strength and direction of the magnetic field at the (x, y, z) positions (a) (1 cm, 0 cm, 0 cm), (b)(0 cm, 1 cm, 0 cm), and (c) (0 cm, -2 cm, 0 cm)?
Open QuestionWhat is the magnetic field at the position of the dot in FIGURE EX29.6? Give your answer as a vector.