The following information pertains to Questions 3 through 7. Consider the following simple model for a hydrogen atom. A point charge of value 1.6 x 10-¹⁹ (C) exists at the origin. That's the proton. Additionally, a charge of -1.6 x 10-¹9 (C) exists as a uniform volume charge density in a spherical shell of inner radius 30 x 10-12 (m) and outer radius 50 x 10-¹2 (m) centered at the origin. And that's the electron.

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
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Chapter1: Introduction
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The following information pertains to Questions 3 through 7.
Consider the following simple model for a hydrogen atom. A point charge of value 1.6 x 10-¹⁹ (C)
exists at the origin. That's the proton. Additionally, a charge of -1.6 x 10-19 (C) exists as a uniform
volume charge density in a spherical shell of inner radius 30 x 10-12 (m) and outer radius 50 x 10-12
(m) centered at the origin. And that's the electron.
Transcribed Image Text:The following information pertains to Questions 3 through 7. Consider the following simple model for a hydrogen atom. A point charge of value 1.6 x 10-¹⁹ (C) exists at the origin. That's the proton. Additionally, a charge of -1.6 x 10-19 (C) exists as a uniform volume charge density in a spherical shell of inner radius 30 x 10-12 (m) and outer radius 50 x 10-12 (m) centered at the origin. And that's the electron.
Question 5
What is the magnitude of the electric field at a radius of 37.8 x 10-12 m? Express your answer in
volts per pico-meter to two places after the decimal. If your answer is negative, then include the
negative sign. If your answer is not negative, then do not.
Transcribed Image Text:Question 5 What is the magnitude of the electric field at a radius of 37.8 x 10-12 m? Express your answer in volts per pico-meter to two places after the decimal. If your answer is negative, then include the negative sign. If your answer is not negative, then do not.
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