OFind the total charge of the non-conducting gel, QGEL , expressed in terms of "Q"
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- amış en A non-conducting sphere with a radius of a is placed inside a cocentric conducting spherical shell. A total charge q is distributed uniformly throughout the volume of the non-conducting sphere (shown in color blue in the figure). The conducting shell (shown in color gray in the figure) with a total charge of -3q has an inner radius of a=0.6 m and outer radius of b =1 m. q=8,5 nC. (Take Coulomb's constant as k = 9 × 10° Nm²/C²) D) What is the magnitude of the electric potential at a point 2 m away from the center of the objects? Give your answer in Nm / C. b aAsap plxxxxxxxxx, i vll upvoteCharges of 2.54 µC, -7.86 µC, 5.34 µC, and -3.78 µC are placed on the corners of a square of side 23.5 cm. Find the resultant force on the first charge.
- .ylsts Aia) Sib 2843 bluos r "(b91c M (O 26uq An initially neutral piece of plastic is has 1.09 x 1015 electrons removed from it. Determine the net charge of the plastic (in μC). no :(a)s 31 LOL OUG(Problems in images below.) Both problems require a volume charge integration of the given charge density functions. Technically, a volume integration is a triple integral. However, since the charge density is spherically symmetric, this reduces to a one-dimensional integration.i ob of doy Insw 1 Jud cento ni mo An 8 μC charge is separated from a 3 µC by 5 m. Find the location that a third charge must be placed such that it experiences no net electric force. Does the value of q matter? gioolov od tad es-or coa
- Three charged marbles are glued to a nonconducting surface and are placed in the diagram as shown. The charges of each marble are q,- 5.50 pC, q,- 1.10 μC, and 93-1.60 C. Marble q, is a distance r = 3.00 cm to the left of the marble q₂, while marble q, is a distance r,-2.00 cm to the right of the marble q,, as shown. observation point 50m. Calculate the magnitude of the electric field a distance - 1.00 cm to the left of the center marbre N/C Another marble is placed 1 cm to the left of the middle marble. If this new marble has a charge of -3.00 pc, calculate the magnitude and direction of the force on it magnitude(a) Two protons in a molecule are 3.60 x 10-10 m apart. Find the magnitude of the average electrostatic force exerted by one proton on the other. magnitude 1110000000 X N direction repulsive (b) State how the magnitude of this force compares with the magnitude of the gravitational force exerted by one proton on the other. Fe 0.00000000| Fg = (c) What must be a particle's charge-to-mass ratio if the magnitude of the gravitational force between two of these particles is equal to the magnitude of electric force between them? 0.000000000 C/kgEarly in the 20th century, a leading model of the structure of the atom was that of English physicist J. J. Thomson (the discoverer of the electron). In Thomson’s model, an atom consisted of a sphere of positively charged material in which were embedded negatively charged electrons, like chocolate chips in a ball of cookie dough. Consider such an atom consisting of one electron with mass m and charge -e, which may be regarded as a point charge, and a uniformly charged sphere of charge +e and radius R. By that time time, it was known that excited atoms emit light waves of only certain frequencies. In his model, the frequency of emitted light is the same as the oscillation frequency of the electron (s) problems in the atom. What radius (in millimeter) would a Thomson-model atom need for it to produce red light of frequency 4.57 x 1014 Hz? (Don't express your answer in scientific notation)
- Handwritten or typed, vll upvote, it is urgent plzProblem 7: Consider the point charges arranged at the corners and at the center of a square, as depicted in the figure. qa Og Otheexpertta.com Find the magnitude of the net Coulomb force, in newtons, on the charge q in the figure, given that q = 0.75 µC, q = 2.1 µC, q, = -4.6 µC, q. - -4.7 µC, and qa = 1.1 µC. The square is 41 cm on a side. Numeric :A numeric value is expected and not an expression.A water molecule with any spatial orientation is placed nearby a spherical distribution of charges Q. Describe the dynamic behavior (rotation and translation) of the water molecule.