= 2.59 μC, x1 = 3.66 cm, y1 = 0.647 cm and q2 = -6.29 μC, x2 = -1.52 cm, y2 = 1.80 cm. Find the (a) magnitude and (b) direction (with respect to +x-axis in the range (-180°;180°]) of the electrostatic force on particle 2 due to particle 1. At what (c) x and (d) y coordinates should
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The charges and coordinates of two charged particles held fixed in an xy plane are q1 = 2.59 μC, x1 = 3.66 cm, y1 = 0.647 cm and q2 = -6.29 μC, x2 = -1.52 cm, y2 = 1.80 cm. Find the (a) magnitude and (b) direction (with respect to +x-axis in the range (-180°;180°]) of the electrostatic force on particle 2 due to particle 1. At what (c) x and (d) y coordinates should a third particle of charge q3 = 4.00 μC be placed such that the net electrostatic force on particle 2 due to particles 1 and 3 is zero?
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- The charge and coordinates of two charged particles held fixed in an y plane are qi =+3.0 µC, x1=3.5 cm, yı=0.50 cm, and q2=-4.0µC, x2=-2.0 cm, y2=1.5 cm. what y coordinates should a third particle of charge q3=+4.0 µC be placed such that the net electrostatic force on particle 2 due to particles 1 and 3 is zero? AtAnswer A onlyConsider two charges q1=−40e and q2=−48e at positions (48,−46,29) and (32/√3, −10/√2 ,21) respectively where all the coordinates are measured in the scale of 10-9 m or nano meters. If position vector of the charge q1 is r⃗ 1 and charge q2 is r⃗ 2. Now consider another charge q3=−47e is in the xyz system positioned at (−41/√3, 42/√2, 35). Calculate the net force acting on q1 and q2. Say the charge q3 have mass of m=0.1gram. What will be it's acceleration given it's in the field of other charges. e) Calculate the magnitude of the acceleration of q3 charge magnitude of the acceleration
- can you please ans (b)?In the figure four particles form a square with edge length a = 2.03 x 102m. The charges are q1-44-2.81 x 1015 C and 92-93-9. (a) What is q if the net electrostatic force on particle 1 is zero? (b) Is there any value of a that makes the net electrostatic force on each of the four particles zero?The charges and coordinates of two charged particles held fixed in an xy plane are q₁ = 2.16 µC, x₁ = 4.49 cm, y₁ = 0.925 cm and 92 = -3.04 μC, x2 = -2.05 cm, y2 = 1.33 cm. Find the (a) magnitude and (b) direction (with respect to +x-axis in the range (-180°; 180°]) of the electrostatic force on particle 2 due to particle 1. At what (c) x and (d) y coordinates should a third particle of charge 93 = 4.90 μC be placed such that the net electrostatic force on particle 2 due to particles 1 and 3 is zero? (a) Number (b) Number (c) Number i (d) Number i Units Units Units Units
- The charges and coordinates of two charged particles held fixed in an xy plane are q₁ = 3.33 µC, x₁ = 4.48 cm, y₁ = 0.216 cm and 92-5.31 μC, x₂ = -2.98 cm, y₂ = 1.68 cm. Find the (a) magnitude and (b) direction (with respect to +x-axis in the range (-180°;180°]) of the electrostatic force on particle 2 due to particle 1. At what (c) x and (d) y coordinates should a third particle of charge q3 = 5.59 μC be placed such that the net electrostatic force on particle 2 due to particles 1 and 3 is zero? (a) Number i 27.52144689030 Units N (b) Number i -11.103004028659 °(degrees) (c) Number i (d) Number i ! Units Units m Units mThe charges and coordinates of two charged particles held fixed in an xy plane are q₁ = 2.17 μC, x₁ = 3.07 cm, y₁ = 0.609 cm and 92 = -3.18 μC, x2 = -2.19 cm, y₂ = 1.16 cm. Find the (a) magnitude and (b) direction (with respect to +x-axis in the range (-180°;180°]) of the electrostatic force on particle 2 due to particle 1. At what (c) x and (d) y coordinates should a third particle of charge 93 = 5.73 μC be placed such that the net electrostatic force on particle 2 due to particles 1 and 3 is zero? (a) Number i (b) Number i (c) Number i (d) Number i Units Units Units UnitsTwo charges are placed on the x axis, equidistant from the y axis. The first charge, q1=0.96μC, is placed at the coordinates (d,0)(-d,0), and the second charge, q2=2.42μC, is placed at the coordinates (−d,0) where d=0.203m. There is a location on the x axis, (x0,0) where the net electric field has a magnitude of zero. What is the value, in meters, of x0?
- The charges and coordinates of two charged particles held fixed in an xy plane are q₁ = 2.19 μC, x₁ = 4.54 cm, y₁ = 0.857 cm and 92 = -6.38 μC, x₂ = -2.36 cm, y₂ = 1.38 cm. Find the (a) magnitude and (b) direction (with respect to +x-axis in the range (-180°;180°]) of the electrostatic force on particle 2 due to particle 1. At what (c) x and (d) y coordinates should a third particle of charge 93 = 5.40 μC be placed such that the net electrostatic force on particle 2 due to particles 1 and 3 is zero? (a) Number i Units (b) Number Units (c) Number i Units (d) Number Units M MO >The figure below shows three positively charged particles at three corners of a rectangle. The particle at upper left has a charge q1 = 4.00 nC, the one at the lower left has a charge of q2 = 5.00 nC,and the one at lower right has a charge q3 = 6.00 nC. The rectangle's horizontal side has length x = 5.00 cm and its vertical side has length y = 3.50 cm. Three positive charges lie at three of the corners of a rectangle of horizontal side length x and vertical side length y < x. An charge labeled q1 is at the upper left corner. A charge labeled q2 is at the lower left corner. A charge labeled q3 is at the lower right corner. (a)What is the electric potential (in V) at the upper-right corner of the rectangle? (Assume the zero of electric potential is at infinity.) ______V (b)What would be the potential (in V) at the upper-right corner if the charge q2 at lower left was−5.00 nC instead? _____VThe charges and coordinates of two charged particles held fixed in an xy plane are q₁ = +3.0 μC, x₁ = 3.007 cm, y₁ = 0.5 cm, and q₂ = -6.0 μC, x₂ = -2.0 cm, y₂ = 2.0 cm. At what y coordinate should a third particle of charge q₃ = -6.0 μC be placed such that the net electrostatic force on particle 2 due to particles 1 and 3 is zero? (1/(4πε₀₎ = 8.99×10⁹ N⋅m²/C²⁾.