Two positive point charges, 1 µC and 5 µC are separated by a distance of 3 m. Calculate the magnitude of the force on Q2 due to Q1.
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- Three point charges lie along the x axis as shown in Figure below. The positive charge q1 = 15 µC is at x =2 m, the positive charge q2 = 6 µC is at the origin, and the net force acting on q3 is zero. What is the x coordinate of qQ3: Three point charges lie along a straight line as shown in Figure below, where q1 = 6.00 μC, q2 = 1.50 μC, and q3 = 22.00 μC. The separation distances are d1 =3.00 cm and d2 = 2.00 cm. Calculate the magnitude and direction of the net electric force on (a) q1, (b) q2, and (c) q3Four equal point charges q1 = q2 = q3 = q4 = −1μC, are located as shown in the figure below. (a) Calculate the net force exerted on the charge q4, which is located midway between q1 and q3. (b) Calculate the magnitude and direction of thenet force on the charge q2.
- Three equal charges of +2C are arranged in a straight line in the sequence of Q1, Q2 and Q3. The distance between charge 1 and 2 is 3/4 meters while the distance between charge 2 and 3 is 1/4 meters. What is the total force exerted on charge 3? Note: Your Answer should be in Giga-Newton unit and is written in the form: 14.143x10^9 N Pls include figures.The figure shows two tiny spheres Q1=5uc and Q2= -7.5uc separated 8 cm.a.) Draw and label the electric fields at point a and determine the magnitude and direction of the electric field at point P.b.) If Q0= -3.2 mC is place at point P, draw and label the FBD of Q0 and determine the magnitude and direction of the force on Q0.The figure below shows two tiny charged spheres q1= +5 μC and q2=−7.5 μC separated by8.0 cm.a) Draw and label the electric fields at point ã and determine the magnitude and direction of the electric field at point Pb) If qO = −3.2 mC is placed at point P, draw and label the FBD of qO and determine the magnitude and direction of the force on qO.
- Two charges, one of 2.50 µC and the other of -3.50 µC, are placed on the x axis, one at the origin and the other at x = 0.600 m, as illustrated in the figure. Find the position on the x-axis where the net force on the small charge + q should equal zero.What is the force on the charge in newtons located at x = +8.00 cm in part (a) of the figure below given that q = 5.00 nC? (The positive direction is to the right.)Consider the arrangement of the point charges shown below. Charge q1 has a value of 6.00 CC and charge q2 has a value of -1.00 CC . What will be the magnitude and direction of the force on the electron at the bottom if the other charges are held in place? a) The magnitude of the force on the electron will be: b) The electron will experience the force at an angle of: (note the +x-axis is defined as 0 degrees.
- According to the figure below, four particles form a square. The charges are ql q4 - q and q2 = q3 = Q. (a)What is Qlg if the net electrostatic force on particles 3 is zero? (b) Is there any value of q that makes the net electrostatic force on each of the four particles zero? Explain.Three equal positive charges of 65 statcoulomb each are located of the vertices of an equiangular triangle of 49 cm leg. What is the magnitude of the force experience by each charges due to one of each charges?Four dies of electric material having relative permittivities 4, 5, 6 and 7 and thicknesses of 2 mm, 3 mm, 4 mm and 5 mm respectively are placed between conductive plates measuring 50 mm x 50 mm. If 100 V is applied between the plates, find the electric stress across each material and the voltage across each material.