Consider the uniform electric field E = 650 (V)/(m) or (N)/(C) (pointing upward) produced by a parallel plate capacitor as shown in the figure below. The separation distance between plates 1 and 2 is 12.0 cm.
A. The plate A is and the plate 2 is
B. The given E-field in the unit vector notation can be expressed as below). (select from the choices
Choice I) 0hat(i) + 650hat(j) (N)/(C)
Choice II) 650hat(i) + 0hat(j) (N)/(C)
Choice III) 0hat(i) - 650hat(j) (N)/(C)
Choice IV) -650hat(i) + 0hat(j) (N)/(C)
Choice V) 650hat(i) + 650hat(j) (N)/(C)
C. If a charge with +3.5 μC is placed in the middle of the two plates in electrostatic equilibrium, then the electrostatic force on this charge particle will be [Select] mN (milliNewtons) pointing [Select]. The Activate shown. The (select from the choices Plate 2 Plate 1 and the plate 2 is [Select] C. If a charge with +3.5C is placed in the middle of the two plates in electrostatic equilibrium, then the electrostatic force A. The plate A is [Select] below). on this charge particle will be [Select].