OriginalQuestion Thomson Charge to Mass Suppose we have an electron moving perpendicular to a B-field along a circular path of radius 17 cm. If imposition of an E-field of 17.8 kV/m makes the path straight, what is the value of B? Bfield= ErrorAnalysis Suppose our E-field measurement has an uncertainty of 0.25 kV/m and our radius of curvature measurement has an uncertainty of 0.6 cm. What is the total uncertainty associated with the magnetic field we just calculated? dBtot=
OriginalQuestion Thomson Charge to Mass Suppose we have an electron moving perpendicular to a B-field along a circular path of radius 17 cm. If imposition of an E-field of 17.8 kV/m makes the path straight, what is the value of B? Bfield= ErrorAnalysis Suppose our E-field measurement has an uncertainty of 0.25 kV/m and our radius of curvature measurement has an uncertainty of 0.6 cm. What is the total uncertainty associated with the magnetic field we just calculated? dBtot=
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![**Original Question**
**Thomson Charge to Mass**
Suppose we have an electron moving perpendicular to a B-field along a circular path of radius 17 cm. If imposition of an E-field of 17.8 kV/m makes the path straight, what is the value of B?
\[ B\text{field} = \underline{\hspace{2cm}} \]
---
**Error Analysis**
Suppose our E-field measurement has an uncertainty of 0.25 kV/m and our radius of curvature measurement has an uncertainty of 0.6 cm. What is the total uncertainty associated with the magnetic field we just calculated?
\[ dB\text{tot} = \underline{\hspace{2cm}} \]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F919fc4f8-bc37-4123-8b2a-9ca8cd02385f%2Fe87df2b3-7652-4d8e-989c-16d0e7999d4b%2Ft3dlfr35_processed.png&w=3840&q=75)
Transcribed Image Text:**Original Question**
**Thomson Charge to Mass**
Suppose we have an electron moving perpendicular to a B-field along a circular path of radius 17 cm. If imposition of an E-field of 17.8 kV/m makes the path straight, what is the value of B?
\[ B\text{field} = \underline{\hspace{2cm}} \]
---
**Error Analysis**
Suppose our E-field measurement has an uncertainty of 0.25 kV/m and our radius of curvature measurement has an uncertainty of 0.6 cm. What is the total uncertainty associated with the magnetic field we just calculated?
\[ dB\text{tot} = \underline{\hspace{2cm}} \]
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