B. A dipole is centered at the origin, and is composed of particles with charges +e and -e, separated by a distance 0.9 nm along the y-axis. The +e charge is on the -y-axis and the -e charge is on the +y-axis. A proton is located at < 4, 0, 0 nm. What is the force on the proton due to the dipole? (0 9.50E-13 0 ) N C. Determine where you should place an electron (in nm) so that the net force (from the dipole and the electron) on the proton will be zero. -15.57 0 > nm 4
B. A dipole is centered at the origin, and is composed of particles with charges +e and -e, separated by a distance 0.9 nm along the y-axis. The +e charge is on the -y-axis and the -e charge is on the +y-axis. A proton is located at < 4, 0, 0 nm. What is the force on the proton due to the dipole? (0 9.50E-13 0 ) N C. Determine where you should place an electron (in nm) so that the net force (from the dipole and the electron) on the proton will be zero. -15.57 0 > nm 4
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![B. A dipole is centered at the origin, and is composed of particles with charges +e and -e, separated by a distance 0.9 nm along the y-axis. The te charge is on the -y-axis and the
-e charge is on the +y-axis. A proton is located at < 4,0,0 > nm. What is the force on the proton due to the dipole?
(0
9.50E-13
0
) N
C. Determine where you should place an electron (in nm) so that the net force (from the dipole and the electron) on the proton will be zero.
(4
-15.57
0
> nm](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc65937de-b2d1-4931-95fe-39c1d929f721%2F83e22835-beba-4b1b-9f2d-45516819a541%2Fu4o1fvl_processed.png&w=3840&q=75)
Transcribed Image Text:B. A dipole is centered at the origin, and is composed of particles with charges +e and -e, separated by a distance 0.9 nm along the y-axis. The te charge is on the -y-axis and the
-e charge is on the +y-axis. A proton is located at < 4,0,0 > nm. What is the force on the proton due to the dipole?
(0
9.50E-13
0
) N
C. Determine where you should place an electron (in nm) so that the net force (from the dipole and the electron) on the proton will be zero.
(4
-15.57
0
> nm
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Step 1: Know the concept:
VIEWStep 2: Draw a diagram of the situation and write the known variables:
VIEWStep 3: Calculate the magnitude of the force on proton due to both charge e and -e:
VIEWStep 4: (a) Calculate the force on the proton:
VIEWStep 5: (b) Calculate the position of new electron so that the net force is zero on proton:
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