This time you put a nucleus with 7 protons on the x-axis at x = 4.2 Angstroms. There will be a place on the x-axis where the total electric field is zero. At what value of x does this occu
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This time you put a nucleus with 7 protons on the x-axis at x = 4.2 Angstroms. There will be a place on the x-axis where the total electric field is zero. At what value of x does this occur?-2.55 Angstroms-1.02 Angstroms0.51 Angstroms0.20 Angstroms
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- At the points of the angles of an equilateral triangle with a side length of 30 cm, the electric charges are 2uC, 2 uC, and 3uC, respectively. What is the coulomb force experienced by a 3uC charge? (with pictures) PLEASE HELP SIR, STEP BY STEP, WITH PICTURE, THX.The protons in a nucleus are approximately 2 x 10-15 m apart. Consider the case where the protons are a distance d = between two protons at this distance. N 2.02 x 10-15 m apart. Calculate the magnitude of the electric force (in N)Consider the two charges in the figure, which are moving in opposite directions and located a distance 11 cm on either side of the origin of the given coordinate system. Charge one is 19.5 uC and is moving at a speed 19.5 x U2 10° m/s, and charge two is -8.5 µC and is moving at a speed of 6.5 x 106 m/s. Notice that the positive z-direction in this figure is directed out of the page. 92 d What is the total magnetic field, in the z-direction, at a point Q located a distance 45 cm down the x-axis, as shown? d 91
- You have a sample of lithium metal that is electrically neutral. What is the approximate ratio of the mass of each positively charged particle in your lithium sample to each negatively charged particle in your lithium sample? O About 3:1 O About 14000:1 O About 7:1 O About 1000:1 O About 1.0e19:1 O About 1:1Considering electron and proton as two charged particles separated by d = 4.5 x 10m calculate the gravitational force between the proton and electron and find its ratio to the Coulomb force. Take the mass of the proton 1.7 x 10-27 kg, the mass of the electron 9.1 x 10-³1 kg, the value of 1 the universal gravitational constant 6.7 × 10-¹1 N kg-2m-2, the electron charge -1.6 × 10- C and = 9 x 10⁹ m/F. Give the answer for Απερ the gravitational force in 10-47 N. 19A small rod of length 1.0 cm is placed along the x-axis and has a linear charge density given by λ=αx, where α=3.0 C/cm^2 and x is measured from the center of the rod.
- only 7 and 8Use the following constants if necessary. Coulomb constant, k = 8.987 x 10° N m2 /C. Vacuum permitivity, eo = 8.854 x 10 12 F/m. Magnitude of the Charge of one electron, e =-1.60217662 x 10-19 C. Mass of one electron, m, = 9.10938356 x 10-31 kg. Unless specified otherwise, each symbol carries their usual meaning. For example, uC means micro coulomb. Y R. Suppose you have 5 point charges q to q, distributed along a semi-circle maintaining equal distance. The charge q6 is on the center of the circle which is also the origin of given coordinate system. The radius of the semi-circle is R = 34 cm and the magnitude of the charges are as follows : 91 = = 19 µC, q2 = q4 = 32 µC and q = q6 = -25 µC. a) Find the vector that points from q to g6 and call it F1,6- b) Calculate the coulomb force on g6 due to q in unit vector notation and call it F16 c) Find the vector that points from q3 to g6 and call it F3,6- d) Calculate the coulomb force on q6 due to g in unit vector notation and call it F36. e)…Two identically charged particles separated by 5 cm repel each other with a force of 80 mN. Determine the repulsive force if the separation distance changes to 20 cm.
- I have placed an electron at the origin. The grid spacing is 1 Angstrom per small square. You put a nucleus with 14 protons on the x-axis at x = 6.3 Angstroms. There will be a place on the x-axis where the total electric field is zero. At what value of x does this occur? 0.55 Angstroms 0.22 Angstroms -2.30 Angstroms -0.92 AngstromsThe three charge configurations are shown in the figure. For the values of q1=3.5uC, q2=-3.5 MC and q3=5 uC. The Forces of the three charges is calculated at q3. (Note:u=micro= 10^-6, If q3 has the mass of 10 grams, what will be the initial acceleration of q3 in m/s^2, due to q1 and q2?Two ions are separated by 55.5 nm. How far to the right of Ion #2 (in units of nm) can an alpha particle be placed to be in equilibrium? Ion #1 is U16+ (Z= 238 amu) and Ion #2 is Cs5- (Z = 133 amu).