Two tiny conducting spheres are identical and carry charges of -27.1 μC and +42.0 μC. They are separated by a distance of 2.69 cm. (a) What is the magnitude of the force that each sphere experiences? (b) The spheres are brought into contact and then separated to a distance of 2.69 cm. Determine the magnitude of the force that each sphere now experiences.
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Q: 9= 9 92=Q 10.0 cm 93= -9 4= -Q
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Q: Three charges are arranged as shown below: q₁ = 22 µC is at the origin, q2 = -10 μC is at a distance…
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Q: two tiny conducting spheres are identical and carry charges of -20.0 \mu C−20.0μC and +50.0\mu…
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- Two small spheres have the same mass and volume. One sphere has a charge of 4.00 micro Coulombs, and the other sphere has a charge of -1.00 micro Coulombs. If these two spheres are brought into brief contact with each other and then separated to a distance of 2.00 x 10^-1 metres, what is the electric force between them at this distance?The drawings show three charges that have the same magnitude but may have different signs. In all cases the distance d between the charges is the same. The magnitude of the charges is lal=9.1 µC, and the distance between them is d=4.6 mm. Determine the magnitude of the net force on charge 2 for each of the three drawings. d d 2 (b) d +q 1 (c) 2 Id +9Red blood cells can often be charged. Consider two red blood cells with the following charges: -24.6 pC and +51.6 pC. The red blood cells are 3.58 cm apart. a) What is the magnitude of the force on each red blood cell? b) The red blood cells come into contact with each other and then are separated by 3.58 cm. What magnitude of force does each of the red blood cells now experience?
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- Two tiny conducting spheres are identical and carry charges of -19.5 μC and +41.5 μC. They are separated by a distance of 3.51 cm. (a) What is the magnitude of the force that each sphere experiences? (b) The spheres are brought into contact and then separated to a distance of 3.51 cm. Determine the magnitude of the force that each sphere now experiences. (a) Number i 5940000000000000 Units N (b) Number i 8810000000000 Units NTwo point charges each with 0.15 CC of charge are 5.0×10−2 mm apart. Knowing that k is 9×10^9N⋅m^2/C (the proportionality constant for Coulomb's law), find the force between the charges. Express your answer to two significant figures and include the appropriate units.Two identical conducting spheres, fixed in place, attract each other with an electrostatic force of 0.140 N when their center-to-center separation is 63.8 cm. The spheres are then connected by a thin conducting wire. When the wire is removed, the spheres repel each other with an electrostatic force of 0.0403 N. Of the initial charges on the spheres, with a positive net charge, what was (a) the negative charge on one of them and (b) the positive charge on the other? (Assume the negative charge has smaller magnitude.)
- Two protons are separated by a distance of 0.366 m. Given the proton charge of 1.60 x 10-19 c, determine the magnitude of the electric force that one proton exerts on the other.Red blood cells can often be charged. Consider two red blood cells with the following charges: -22.4 pC and +52.4 pC. The red blood cells are 4.39 cm apart. (1 pC = 1 x 10-12 C.) (a) What is the magnitude of the force on each red blood cell? N Are the red blood cells attracted or repulsed by each other? O attracted O repulsed (b) The red blood cells come into contact with each other and then are separated by 4.39 cm. What magnitude of force does each of the red blood cells now experience? N Are the red blood cells attracted or repulsed by each other? O attracted O repulsedTwo small identical conductors, one with a charge of 45 μC and the other with charge -81 μC are brought together so that they touch, then separated. If the force they exert on each other has a size of 0.7 N, how far apart are the two conductors? (in m)(a) 7.14 m(b) 14.29 m(c) 6.85 m(d) 2.04 m(e) 4.08 m