Directions: Briefly and concisely answer the following questions. 1. What is the net force? 2. How do you determine the direction of the magnetic force acting on the negative charge? 3. How do you determine the direction of the electric force acting on the negative charge? 4. Does the fact that the charge is moving affect the values of the magnetic and electric forces?
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- Directions: Briefly and concisely answer the following questions. What is the net force? __________________________________________________________________________________________________________________________________________________________________________________________________________________________. How do you determine the direction of the magnetic force acting on the negative charge? __________________________________________________________________________________________________________________________________________________________________________________________________________________________. How do you determine the direction of the electric force acting on the negative charge? __________________________________________________________________________________________________________________________________________________________________________________________________________________________. Does the fact that the charge is moving affect the values of the…1. What is the net force? 2. How do you determine the direction of the magnetic force acting on the negative charge? 3. How do you determine the direction of the electric force acting on the negative charge? 4. Does the fact that the charge is moving affect the values of the magnetic and electric forces?Please answer part d and please explain where the magnetic field will be and how will the magnetic field behave?
- Determine the magnetic field direction that causes the charged particle shown in (Figure 1) (a) to experience the indicated magnetic force. Match the words in the left column to the appropriate blanks in the sentences on the right.I need proper answer for this question( well explained and understandable writing) How can the motion of a moving charged particle be used to distinguish between a magnetic field and an electric field? Give a specific example to justify your argument.Determine the magnetic field direction that causes the charged particle shown in (Figure 1) (b) to experience the indicated magnetic force. Match the words in the left column to the appropriate blanks in the sentences on the right.
- Direction: Read the problem carefully and show your complete solution on the space provided. 1. A 1.13 x 10 -19-C negative charge is traveling with a speed of 3.5 x 107 m/s through a uniform field with magnitude 0.076 T. The charge has a mass of 1.95 x 10-31 kg. Determine the angle the velocity vector makes with the field if the particle's acceleration is 1.25 x 1017 m/s2. 2. Suppose another solenoid is to be designed to produce a uniform 1.350-T magnetic field near its center, and a very long wire will be wound around it 4570 times. If the solenoid has to be 45.65-cm long and 7.8-cm in diameter, how much electric current is needed to produce the given field?solve the following question box the final answer. 1. A wire 12cm long carrying a current of 30A is placed in between the pole face of a magnet whose magnetic flux density is 0.9tesla. If the wire inclined at angle of 30degrees from the plane of the magnetic field, what is the force exerted on the wire? Answer ____ N 2. Calculate the magnetic field intensity to produce a flux density of 100x10^-3 tesla at the center of a long straight solenoid. Answer ______ AT/mShort answer: (question 1 has two parts (a and b) to it. 1. A wire loop in the plane of the page carries a clockwise current. There is an external magnetic field pointing toward the top of the page. a. In what direction is the loop's magnetic dipole moment? b. What is the motion of the loop due to the external magnetic field? 2. A wire loop in the plane of the page does not initially contain a current. There is an external magnetic field pointing out of the page. If there begins to be an induced clockwise current in the wire loop, is the magnetic field increasing or decreasing in strength?
- 1. There are three parallel wires Ꚛ Ꚛ ʘ. In the left and the center wires current directed to the page, and in the right - out the page. If the left and the right wires are fixed, what is the direction of the force on the middle wire? 2. What conclusion can be drawn about the relation between magnetic force and currents? 3. What is the theoretical slope of the graph F vs. IA*IB and does it agree with the simulation? 4. What conclusion can you draw about the relation between magnetic force and distance? 5. What is the theoretical slope of the graph F vs 1/R and does it agree with the simulation one?Let’s Check 9 In this activity, please write TRUE if the statement is true and write FALSE if the statement is false. This is to check your understanding of the concepts. ______1. The magnetic fields are directed form south to North Pole of the magnet. ______2. The magnetic fields can be produced by permanent magnet and current carrying conductor. ______3. When a single positive charged particle will pass perpendicular to the direction of magnetic field, the particle will move. ______4. The right hand rule shows the direction of electromagnetic force. ______5. The magnetic force or electromagnetic force is directed parallel to the direction of magnetic field. Let’s Check 10 In this activity, please write TRUE if the statement is true and write FALSE if the statement is false. This is to check your understanding of the concepts. _________1. Torque is being applied in rotating moors. _________2. The strength of the turning effect or torque is directly…MagnetismDirections: Answer the following problem, write your answer with complete solution. If a 15C charged particle is traveling perpendicularly to a magnetic field of 8T at a speed of 2m/s, what is the force experienced by this charged particle?