Question

Consider two point charged objects separated by a distance of 3.68 cm. The charge on the...

Consider two point charged objects separated by a distance of 3.68 cm. The charge on the left hand object is +39.0 μC. The charge on the right hand object is -39.0 μC.

a.)What is the strength (magnitude) of the electric field due to the left hand object only at the location exactly halfway in between the two charged objects?

b.) What is the strength (magnitude) of the electric field due to the right hand object only at the location exactly halfway between the two charged objects?

c.)What is the strength of the net electric field due to the BOTH objects at the point halfway between the two charged objects?

d.)What would be the force on a proton placed at the point halfway between the objects?

0 0
Add a comment Improve this question Transcribed image text
Answer #1

the strength (magnitude) of the electric field due to the left hand object only at the location exactly halfway in between the two charged objects

E = 9x10^9 x 39x10^-6 / (0.0184)^2 = 10.36x10^8 N/C

similarly,

the strength (magnitude) of the electric field due to the right hand object only at the location exactly halfway between the two charged objects

E = 9x10^9 x 39x10^-6 / (0.0184)^2 = 10.36x10^8 N/C

the strength of the net electric field due to the BOTH objects at the point halfway between the two charged objects is ZERO.

the force on a proton placed at the point halfway between the objects is

F = 9x10^9 x (39x10^-6x1.602x10^-19) / (0.0184)^2 = 1.66x10^-10 N

Add a comment
Know the answer?
Add Answer to:
Consider two point charged objects separated by a distance of 3.68 cm. The charge on the...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Consider two point charged objects separated by a distance of 8.87 cm. The charge on the...

    Consider two point charged objects separated by a distance of 8.87 cm. The charge on the left hand object is +38.0 μC. The charge on the right hand object is -38.0 μC. What is the strength (magnitude) of the electric field due to the left hand object only at the location exactly halfway in between the two charged objects? Tries 0/10 What is the strength (magnitude) of the electric field due to the right hand object only at the location...

  • Two charged objects are separated by a distance of L=0.6780 m as shown in the diagram....

    Two charged objects are separated by a distance of L=0.6780 m as shown in the diagram. TwoChargeLinear01.gif Object Q1 has a charge of +4.890 nC. Object Q2 has a charge of +2.980 nC. What is the magnitude and direction of the net electric field at Point A (due to both charged objects Q1 and Q2), which is located a distance d=0.1559 m to the right of Object Q1? to the Left to the Right Tries 0/10 If you were to...

  • Two charged objects are separated by a distance of L-0.6950 m as shown in the diagram...

    Two charged objects are separated by a distance of L-0.6950 m as shown in the diagram Q1 d Q2 Object Q1 has a charge of +6.780 nC. Object Q2 has a charge of +2.160 nC. What is the magnitude and direction of the net electric field at Point A (due to both charged objects Q1 and Q2), which is located a distance d=0.1946 m to the right of Object Q1? to the Left to the Right Submit Answer Tries 0/10...

  • A point charge q = +39.0 μC moves from A to B separated by a distance...

    A point charge q = +39.0 μC moves from A to B separated by a distance d = 0.171 m in the presence of an external electric field E with arrow of magnitude 300 N/C directed toward the right as in the following figure. 4. +-22 points SerCP11 16 P.006 My Notes Ask Your Teacher a distance d -0.171 m in the presence of an external electric field E of magnitude 300 N/C directed toward the right as in A...

  • Electric Field around a Point Charged Object 01 Due in 12 hours, 18 minutes In describing...

    Electric Field around a Point Charged Object 01 Due in 12 hours, 18 minutes In describing the electric force we use the concept of the electric field. Every object that has a non-zero charge creates an electric field around it everywhere in space. The field is a vector quantity, so it has a magnitude and a direction at every point in space Refer to your book for a discussion of the electric field created by point-charged object. Take note of...

  • The figure shows two positively charged objects and one negatively charged object. What is the direction...

    The figure shows two positively charged objects and one negatively charged object. What is the direction of the net electric force on the negatively charged object? A. The net force is zero, B. The net force points approximately to the right, C. The net force points approximately up, D. The net force points approximately down E. The net force points approximately to the left A proton (charge of 1.6* 10-19 C) and an electron (charge of -1.6 10-19 C) are...

  • A point charge q = +39.0 µC moves from A to B separated by a distance...

    A point charge q = +39.0 µC moves from A to B separated by a distance d = 0.184 m in the presence of an external electric field E with arrow of magnitude 295 N/C directed toward the right as in the following figure. A positive point charge q is initially at point A, then moves a distance d to the right to point B. Electric field vector E points to the right. (a) Find the electric force exerted on...

  • a) b) There are two equal but opposite charged objects separated by a known distance. Where...

    a) b) There are two equal but opposite charged objects separated by a known distance. Where is the electric potential the highest? Select one a. An infinite distance from the charges b. Nearest to either charge the potentials are the same at these points O c. Nearest to the negative charge d. Midway between the charges e. Nearest to the positive charge Choose the correct statement regarding electric potentials: Select one: a. The potential of a negatively charged conductor must...

  • Coulomb’s Law describes the force between two (and only two!) charged objects. Suppose Object 1 has...

    Coulomb’s Law describes the force between two (and only two!) charged objects. Suppose Object 1 has a charge of +2.71 μC and Object 2 has a charge of +18.5 μC. Object 2 is located a distance of 0.04480 m to the right of Object 1 (Yes — please break down and draw a quick sketch!). What is the magnitude and direction of the electrical force on Object 2 due to Object 1? What is the magnitude and direction of the...

  • The figure shows two protons separated by a distant d. Point Pis a distance d/4 from...

    The figure shows two protons separated by a distant d. Point Pis a distance d/4 from the rightmost charge. If d is equal to 4 nm, what is the magnitude of the net electric field at point P, and which way does it point? proton Р proton d/4 3.3E9N/C, to the right 7.2E9N/C, to the left 7.2E9 N/C, to the right 5.1E9 N/C, to the left 5.1E9 N/C, to the right

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT