What is the total charge of all electrons in 17/100 gram of Carbon dioxide CO2 gas Your Answer: Answer
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A: given that,q1=10 μCq2=-20 μCq3=30 μCAB=BC=42+32AB=BC=5 mangle ϕ=tan-143=53.13°γ=180-2ϕ=73.74°angle…
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Q: What is the total charge of all electrons in 12 /100 gram of Carbon dioxide CO2 gas? Your Answer:
A: Solution:-Given thatmass of CO2=12100 grammolecular mass of CO2=44 gm/mol
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Q: In 1909, Robert Millikan and Harvey Fletcher designed an experiment to measure the electric charge…
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Q: Three charged marbles are glued to a nonconducting surface and are placed in the diagram as shown.…
A: Given, q1=6.10μCq2=1.0μCq3=-2.20μCr1=3.0cm=3.0×10-2mr2=2.0cm=2.0×10-2m Let's consider q2 is at…
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- An infinitely long conducting cylinder of radius 2 cm has a linear charge density +4 µC/m is surrounded by an insulating shell of inner radius 8 cm and outer radius 12 cm. The insulating shell has a net linear charge density of +3 µC/m (Figure 1) Figure 1 of 1 Insulating Cylindrical Shell Central Cylinder Acyl Ashell.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 OUGPoint charges of 49 nC, -36 nC, and -25 nC are placed within a dodecahedron. Determine the total electric flux through the surface of the dodecahedron.
- 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 magnitudeA small metal sphere carrying a net charge of Q = -2.00 uC is held stationary by insulating supports. A second small metal sphere with a net charge of Q 2 = +7.80 uC and mass 1.50 g is is held 0.8 m away from the center of the first sphere. Assume the two spheres can be treated as point charges and that you can ignore gravity. If the second sphere is released, how fast will it be traveling when it is 0.6 m away from the center of the first sphere?Please explain
- In 1909, Robert Millikan and Harvey Fletcher designed an experiment to measure the electric charge of oil droplets by dropping them through an electric field, increasing the electric field strength until the droplets were suspended in the air. By repeating the experiment for many droplets, they confirmed that the charges were all small integer multiples of a certain base value, and thus they measured the charge of a single electron. In Millikan's experiment in the figure below, an oil droplet of mass 3.18 fg has an excess charge of five electrons. An electric field has been applied, and the droplet is levitating. What is the magnitude of the electric field? (Units: N/C) Note: 1??=10−15?=10−18??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.