U= 2. ENERGY CALCULATIONS-WORK A proton moves 5 cm on a path in the direction of a uniform electric field of strength 4.4 NIC. How much work is done on the proton by the electrical fleid? W= WIDT BR 8the charge of q= 6.8 μC is locared in an electric field at a position where the electric potential is V=-5.76+05 V. What is the particle's potential energy? J 3. ENERGY CALCULATIONS KINETIC ENERGY K= An electron in a cathode ray tube is accelerated through a potential difference of 4 kV. What kinetic energy does the electron gain in the process? 4. ENERGY CALCULATIONS CONSERVATION OF ENERGY Two protons approach each other from a great distance along a path connecting their centers. If the initial speed of each proton is 423 m/s, how close will the protons come to each other before they are set way
U= 2. ENERGY CALCULATIONS-WORK A proton moves 5 cm on a path in the direction of a uniform electric field of strength 4.4 NIC. How much work is done on the proton by the electrical fleid? W= WIDT BR 8the charge of q= 6.8 μC is locared in an electric field at a position where the electric potential is V=-5.76+05 V. What is the particle's potential energy? J 3. ENERGY CALCULATIONS KINETIC ENERGY K= An electron in a cathode ray tube is accelerated through a potential difference of 4 kV. What kinetic energy does the electron gain in the process? 4. ENERGY CALCULATIONS CONSERVATION OF ENERGY Two protons approach each other from a great distance along a path connecting their centers. If the initial speed of each proton is 423 m/s, how close will the protons come to each other before they are set way
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![HANCE-PHY 1800, section 1, Spring 2023 | WebAssign
A particle with an electric charge of q= 6.8 μC is locared in an electric field at a position where the electric potential is V=-5.7e 05 V. What is the particle's potential energy?
U=
2. ENERGY CALCULATIONS-WORK
A proton moves 5 cm on a path in the direction of a uniform electric field of strength 4.4 NIC. How much work is done on the proton by the electrical field?
W=
J
3. ENERGY CALCULATIONS KINETIC ENERGY
An electron in a cathode ray tube is accelerated through a potential difference of 4 kV. What kinetic energy does the electron gain in the process?
K=
4. ENERGY CALCULATIONS CONSERVATION OF ENERGY
Two protons approach each other from a great distance along a path connecting their centers. If the initial speed of each proton is 423 m/s, how close will the protons come to each other before they are set away)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fccc31a2e-31a6-4855-a97f-7533aa430bc3%2Fb7dd6c9f-b6f6-4705-8551-5219f0401727%2F3xyj22n_processed.jpeg&w=3840&q=75)
Transcribed Image Text:HANCE-PHY 1800, section 1, Spring 2023 | WebAssign
A particle with an electric charge of q= 6.8 μC is locared in an electric field at a position where the electric potential is V=-5.7e 05 V. What is the particle's potential energy?
U=
2. ENERGY CALCULATIONS-WORK
A proton moves 5 cm on a path in the direction of a uniform electric field of strength 4.4 NIC. How much work is done on the proton by the electrical field?
W=
J
3. ENERGY CALCULATIONS KINETIC ENERGY
An electron in a cathode ray tube is accelerated through a potential difference of 4 kV. What kinetic energy does the electron gain in the process?
K=
4. ENERGY CALCULATIONS CONSERVATION OF ENERGY
Two protons approach each other from a great distance along a path connecting their centers. If the initial speed of each proton is 423 m/s, how close will the protons come to each other before they are set away)
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