A deuteron (the nucleus of an isotope of hydrogen) has a mass of 3.34×10−27 kg and a charge of 1.60×10−19C. The deuteron

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A deuteron (the nucleus of an isotope of hydrogen) has a mass of 3.34×10−27 kg and a charge of 1.60×10−19C. The deuteron

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A Deuteron The Nucleus Of An Isotope Of Hydrogen Has A Mass Of 3 34 10 27 Kg And A Charge Of 1 60 10 19c The Deuteron 1
A Deuteron The Nucleus Of An Isotope Of Hydrogen Has A Mass Of 3 34 10 27 Kg And A Charge Of 1 60 10 19c The Deuteron 1 (43.47 KiB) Viewed 25 times
A Deuteron The Nucleus Of An Isotope Of Hydrogen Has A Mass Of 3 34 10 27 Kg And A Charge Of 1 60 10 19c The Deuteron 2
A Deuteron The Nucleus Of An Isotope Of Hydrogen Has A Mass Of 3 34 10 27 Kg And A Charge Of 1 60 10 19c The Deuteron 2 (47.11 KiB) Viewed 25 times
A Deuteron The Nucleus Of An Isotope Of Hydrogen Has A Mass Of 3 34 10 27 Kg And A Charge Of 1 60 10 19c The Deuteron 3
A Deuteron The Nucleus Of An Isotope Of Hydrogen Has A Mass Of 3 34 10 27 Kg And A Charge Of 1 60 10 19c The Deuteron 3 (27.85 KiB) Viewed 25 times
A deuteron (the nucleus of an isotope of hydrogen) has a mass of 3.34×10−27 kg and a charge of 1.60×10−19C. The deuteron travels in a circular path with a radius of 6.70 mm in a magnetic field with a magnitude of 2.90 T.
Find the time required for it to make 21​ of a revolution. Express your answer in seconds.
Through what potential difference would the deuteron have to be accelerated to acquire this speed? Express your answer in volts.
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