2. A Carbon-12 nucleus (comprising six protons and six neutrons) is accelerated from rest through a potential difference of 2 kilovolts and then passes through a small hole in the accelerator. After passing through the hole, the nucleus emerges in a perpendicular uniform magnetic field. The nucleus then follows a semi-circular trajectory before smacking the backside of the accelerator 50 centimeters from the hole. Next a Carbon-14 nucleus (comprising six protons and eight neutrons) is accelerated through the same potential, passes through the same hole, and emerges in the same magnetic field. Determine the location of impact for the Carbon-14 nucleus.

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2. A Carbon-12 nucleus (comprising six protons and six neutrons) is accelerated from rest through a potential difference of 21 kilovolts and then passes through a small hole in the accelerator. After passing through the hole, the nucleus emerges in a perpendicular uniform magnetic field. The nucleus then follows a semi-circular trajectory before smacking the backside of the accelerator 50 centimeters away. Next a Carbon-14 nucleus (comprising six protons and eight neutrons) is accelerated through the same potential, passes through the same hole, and emerges in the same magnetic field. Determine the location of impact for the Carbon-14 nucleus.
Transcribed Image Text:2. A Carbon-12 nucleus (comprising six protons and six neutrons) is accelerated from rest through a potential difference of 21 kilovolts and then passes through a small hole in the accelerator. After passing through the hole, the nucleus emerges in a perpendicular uniform magnetic field. The nucleus then follows a semi-circular trajectory before smacking the backside of the accelerator 50 centimeters away. Next a Carbon-14 nucleus (comprising six protons and eight neutrons) is accelerated through the same potential, passes through the same hole, and emerges in the same magnetic field. Determine the location of impact for the Carbon-14 nucleus.
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