3) An electric dipole is made of two charges of equal magnitudes and opposite signs. The positive charge, q = 7.82 fC, is located at the point (x, y, z) = (0.00 cm, 7.3 cm, 0.00 cm), while the negative charge is located at the point (x, y, z) = (0.00 cm, -11.0 cm, 0.00 cm). How much work will be done by an electric field É = -(32.1 × 10^4 N/C) i to bring the dipole to its stable equilibrium position?
Q: Positive electric charge QQ is distributed uniformly along a thin rod of length 2a. The rod lies…
A: The electric potential at x=L (L>+a) along the length of rod is found by integrating the point…
Q: In the diagram below, the two charges q1 = +q and q2 = −2q are fixed in place. The distance between…
A:
Q: 2 electrons tarvel a distance of 2.0 x 10^-3 meter as their electrical potential is raised by 500…
A:
Q: Given three points: (q1= 3.0mC, q2= -4.5mC, and q3= 5.5mC). Q1 and q2 are located .06m apart, q1 and…
A: Given data: Charges at 1,2 and 3 are, Q1=3.0 mCQ2=-4.5 mCQ3=5.5 mC
Q: Two protons are released from rest when they are 0.7 µm apart. What is their initial potential…
A: Given: Separation between protons r=0.7 μm=0.7×10-6 m Standard value used : Proton charge…
Q: A particle that carries a net charge of -59.8 μC is held in a constant electric field that is…
A: Q = charge = -59.8μc θ = angle from vertical =25.2 E = electric field =6.32N/C d = distance…
Q: 1. -2q As shown in the diagram, two charges +q and -2q are placed on opposite corners of a square…
A: Given that:- q=1.1×10^-9C
Q: charge of 56.0 nC is placed in a uniform electric field that is directed vertically upward and that…
A: Concept Use formula of work done by force w = f.d Cos (theta) Replace f = qE And solve
Q: (a) Determine the electric potential at points A, B, and C. (b) Find the differences in electric…
A: Step 1: Step 2: Step 3: Step 4:
Q: The figure below shows a charged particle, with a charge of q = +43.0 nC, that moves a distance of d…
A:
Q: Consider the same charge q=1C moving in the same field, E=2 N/C in the x direction, between the same…
A: The force on the charge can be calculated as below,
Q: A particle has a charge of +1.40 µC and moves from point A to point B, a distance of 0.170 m. The…
A:
Q: A line charge of 3L with nonuniform charge density A(x) = ax is placed along the x-axis as shown in…
A:
Q: In the science fiction story "The little prince is an android" a second journey of the character…
A:
Q: How much work does the electric field do in moving a −3 µC charge from ground (V = 0) to a point…
A: Charge, q = −3 µC Charge moved from 0 V to +100 V.
Q: The figure below shows a charged particle, with a charge of q = +39.0 nC, that moves a distance of d…
A: Hello. Since your question has multiple sub-parts, we will solve first three sub-parts for you. If…
Q: Find the work done to transfer a point charge q=+5 µC in the electric field: wwwwwww E=yi-xj From…
A: Potential difference between two points: The work required to move a unit positive charge from…
Q: The rectangle in the figure is 3 sidescapped by 5.0cm and 15cm, etq1 = −5μCetq2 = + 2.0μC. IfV = 0…
A: “Since you have posted a question with multiple sub-parts, we will solve first three subparts for…
Q: Two protons are located at (4.60, 0) m and (0, 3.80) m, respectively. Determine the following. (a)…
A:
Step by step
Solved in 2 steps with 1 images
- 3) An electric dipole is made of two charges of equal magnitudes and opposite signs. The positive charge, q = 5.98 nC, is located at the point (x, y, z) = (0.00 cm, 14.0 cm, 0.00 cm), while the negative charge is located at the point (x, y, z) = (0.00 cm, -28.0 cm, 0.00 cm). How much work will be done by an electric field É= (12.3 × 105 N/C) i to bring the dipole to its stable equilibrium position? %3DTwo protons are located at (4.70, 0) m and (0, 2.90) m, respectively. Determine the following. (a) the electric potential at the origin V (b) the electric potential energy of a third proton located at the origin JThe figure below shows a small, charged sphere, with a charge of q = +38.0 nC, that moves a distance of d = 0.171 m from point Ato point B in the presence of a uniform electric field E of magnitude 280 N/C, pointing right. (a) What is the magnitude (in N) and direction of the electric force on the sphere? magnitude n? (b) What is the work (in J) done on the sphere by the electric force as it moves from A to B? J?? (C) What is the change of the electric potential energy (in J) as the sphere moves from A to B? (The system consists of the sphere and all its surroundings.) PEB − PEA = ? J (D)What is the potential difference (in V) between A and B? VB − VA = ? V
- A square of side a = 1 m has charges +Q and -Q (Q = 2 μC) alternating from one corner tothe next. Find the electric potential energy for the systems of charges.Two protons are located at (2.00, 0) m and (0, 2.30) m, respectively. Determine the following. (a) the electric potential at the origin V (b) the electric potential energy of a third proton located at the origin JProblem 5: A point charge Q1 = +4.3 µC is fixed in space, while a point charge Q2 = +3.8 nC, with mass 7.7 ug, is free to move around nearby. Part (a) Calculate the electric potential energy of the system, in joules, when Q2 is located 0.45 m from Q1. PE = sin() cos() tan() 7. 9 HOME cotan() asin() acos() E 4 5 atan() acotan() sinh() 12 3 cosh() tanh() cotanh() END ODegrees O Radians vol BACKSPACE DEL CLEAR Part (b) If Q2 is released from rest at a point 0.45 m from Q1. what will be its speed, in meters per second, when it is 0.84 m from Q?
- Two charges Q₁ = 6.2μC and Q2 = 5.9μC are placed on the two corners of a rectangle with the sides a = 6.9mm and b = 14.3mm as shown in the figure below. How much work is required to 5.3mm away from = bring a thir charge Q3 = 5.1μC from infinity to point P that is a distance c Q₁? Please take k J or N.m. Q₁ a - 9.0 x 10°N. m²/C² and express your answer using one decimal place in units of b P Q2 0.2Ch 19, problem 16 The drawing shows a square, each side of which has a length of L = 0.250 m. Two different positive charges q1 and q2 are fixed at the corners of the square. Find the electric potential energy of a third charge q3 = -7.00 x 10-9 C placed at corner A and then at corner B.13) Consider the following potential between two atoms, given as a function of the center-to- center separation between the atoms. PE[in units of 10-²1 2.0 1.5 1.0 0.5 0.0 -0.5 -1.0 -1.5 -2.0 6 r[in units of 10-10 m] A: 1.12 x 10-10 m B: 4.0 x 10-10 m C: 2.25 x 10-10 m D: 3.0 x 10-10 m E: 2.5 x 10-10 m 8 If this system of two atoms has a total energy of Etotal = -0.5×10-21 J, what is the maximum separation these two particles can reach?
- €1=15.0 4 |1=1.00 A MM Gelison R₂ = 200 [=100m E2= {3 = ₁ R₁ = 5,000 un 4.00 R = R₂ 1,00d 2.00 A @What is E₂ = 1 What is E3 = Wy what is the potential 0,5pts difference of brebtive to pont a (V₂a) ?The electric potential in a region of space is V(r⃗ )=Ar3V(r→)=Ar3, with AA a constant. How much work does the electric force perform on a particle with charge qq when the particle is moved from the point r⃗ a=i^+j^+k^(m)r→a=i^+j^+k^(m) to r⃗ b=−2k^(m)r→b=−2k^(m)?An electron is placed in an xy plane where the electric potential depends on x and y as shown in the figure (the potential does not depend on z). The scale of the vertical axes is set by V, - 500 V. In unit-vector notation, what is the electric force on the electron? Number VM) 02 x (m) 04 V(V) 02 y (m) i Units 0,4