A rocket zooms past the earth at v= 2.0 x 106 m/s. Scientists on the rocket have created the electric and magnetic fields shown in the figure.(Figure 1) Assume that B=0.80 T and E= 8.0x105 V/m.

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Chapter1: Units, Trigonometry. And Vectors
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**Problem Statement:**

A rocket zooms past the Earth at a velocity \( u = 2.0 \times 10^6 \, \text{m/s} \). Scientists on the rocket have created the electric and magnetic fields shown in the figure. Assume that \( B = 0.80 \, \text{T} \) and \( E = 8.0 \times 10^5 \, \text{V/m} \).

**Diagram Explanation:**

The diagram includes a rocket moving to the right with a velocity of \( 2.0 \times 10^6 \, \text{m/s} \). The magnetic field \( B \) is depicted perpendicular to the direction of motion, and the electric field \( E \) is shown parallel to the motion, toward the rear of the rocket. The rocket's flow direction is indicated with a green arrow.

**Questions:**

**Part A:**

"What is the electric field strength measured by an earthbound scientist?"

- Express your answer using two significant figures.
- \( E = \) _______ \( \text{V/m} \)

**Part B:**

"What is the direction of the electric field measured by an earthbound scientist?"

- Options:
  - Up
  - Down
  - Left
  - Right
  - Into the page
  - Out of the page

**Part C:**

"What is the magnetic field strength measured by an earthbound scientist?"

- Express your answer using two significant figures.
- \( B = \) _______ \( \text{T} \)

**Submission:**

- Each part allows submission of answers with options to request the correct answer.
Transcribed Image Text:**Problem Statement:** A rocket zooms past the Earth at a velocity \( u = 2.0 \times 10^6 \, \text{m/s} \). Scientists on the rocket have created the electric and magnetic fields shown in the figure. Assume that \( B = 0.80 \, \text{T} \) and \( E = 8.0 \times 10^5 \, \text{V/m} \). **Diagram Explanation:** The diagram includes a rocket moving to the right with a velocity of \( 2.0 \times 10^6 \, \text{m/s} \). The magnetic field \( B \) is depicted perpendicular to the direction of motion, and the electric field \( E \) is shown parallel to the motion, toward the rear of the rocket. The rocket's flow direction is indicated with a green arrow. **Questions:** **Part A:** "What is the electric field strength measured by an earthbound scientist?" - Express your answer using two significant figures. - \( E = \) _______ \( \text{V/m} \) **Part B:** "What is the direction of the electric field measured by an earthbound scientist?" - Options: - Up - Down - Left - Right - Into the page - Out of the page **Part C:** "What is the magnetic field strength measured by an earthbound scientist?" - Express your answer using two significant figures. - \( B = \) _______ \( \text{T} \) **Submission:** - Each part allows submission of answers with options to request the correct answer.
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