Give a basis for the indicated vector space over the field. ℚ(∛2) over ℚ
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Give a basis for the indicated vector space over the field.
ℚ(∛2) over ℚ
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- Draw the electric field at each of the designated points for each configuration of charges (Fig. 1). O XCharge Q1 = -12.0 nC is placed at (x,y) = (8, 0) millimeters and charge Q2 = 5.6 nC is placed at (2, 9) millimeters on the coordinate system shown. Charge Q0 = -2.83 nC is at the origin. Determine the magnitude of force on Q0. Express your answer in nN (nanoNewtons).A positively charged particle of mass 1.92 x 10-27 kg initially moves left to right long the x axis at a speed of 4.02 x 103 m/s. It moves into an electric field, which points in the negative x direction, and travels a distance of 0.41 m before coming to rest. What acceleration magnitude does the particle experience? (Ignore gravity) Round your answer to 2 decimal places.
- Find the electric field at point P. ( Magnitude and direetioz ) 6pCCharges q, and 92 are placed on the y-axis at y = 0 and y = 25.1 m, respectively. If q, = -46.8 pC and q2= +64 pC, determine the net flux through a spherical surface (radius = 9.5 m) centered on the origin. Round your answer to 2 decimal places.Please answer c and d