When a mixed beam containing -particles, -particles, and -rays passes through a uniform electric field, the -particles undergo a significantly greater lateral deflection than the -particles. Which of the following best explains this observation?
- The charge-to-mass ratio of a -particle is significantly greater than that of an -particle.Cevap
- BThe magnitude of the electric force acting on a -particle is greater than that acting on an -particle.
- C-particles travel at a much lower velocity than -particles, allowing the electric field more time to act on them.
- D-particles possess no net electric charge and are therefore unaffected by the electric field.
Cevap
The charge-to-mass ratio of a -particle is significantly greater than that of an -particle.
In a uniform electric field , a charged particle experiences an acceleration given by . The degree of deflection is directly proportional to this acceleration, and hence to the charge-to-mass ratio (). Even though an -particle carries twice the magnitude of charge of a -particle ( compared to ), an -particle is about times more massive than a -particle. Consequently, the charge-to-mass ratio of the -particle is thousands of times larger, causing it to undergo a significantly greater deflection in the field.
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Deflection of nuclear emissions in electric fields is governed by their charge-to-mass ratio ().
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