24. (10) Electron beams are commonly used in scientific instruments. One method of producing a beam of electrons is to accelerate them across a potential difference in a capacitor style apparatus (these are used to generate an electric field). Imagine an electron released form rest in a uniform electric field between 2 oppositely charged plates (this is a capacitor...) if the field has a magnitude of 1 × 103, what is the acceleration of the electron? Which plate does it accelerate N C' towards? The positive plate or the negative plate? The mass of an electron is 9.1 x 10-31kg *start by calculating the force on the electron and then use newtons second law to determine the acceleration.
24. (10) Electron beams are commonly used in scientific instruments. One method of producing a beam of electrons is to accelerate them across a potential difference in a capacitor style apparatus (these are used to generate an electric field). Imagine an electron released form rest in a uniform electric field between 2 oppositely charged plates (this is a capacitor...) if the field has a magnitude of 1 × 103, what is the acceleration of the electron? Which plate does it accelerate N C' towards? The positive plate or the negative plate? The mass of an electron is 9.1 x 10-31kg *start by calculating the force on the electron and then use newtons second law to determine the acceleration.
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24. (10) Electron beams are commonly used in scientific instruments. One method of producing a
beam of electrons is to accelerate them across a potential difference in a capacitor style apparatus
(these are used to generate an electric field). Imagine an electron released form rest in a uniform
electric field between 2 oppositely charged plates (this is a capacitor...) if the field has a
magnitude of 1 × 103, what is the acceleration of the electron? Which plate does it accelerate
towards? The positive plate or the negative plate? The mass of an electron is 9.1 x 10-31kg
*start by calculating the force on the electron and then use newtons second law to determine the
acceleration.
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