Question: Fusion Reactor If two deuterium nuclei (charge +e, mass 3.34 X 10-27 kg) get close enough together, the attraction of the strong nuclear force will

Fusion Reactor If two deuterium nuclei (charge +e, mass 3.34 X 10-27 kg) get close enough together, the attraction of the strong nuclear force will fuse them to make an isotope of helium, releasing vast amounts of energy. The range of this force is about 10-15 m. This is the principle behind the fusion reactor. The deuterium nuclei are moving much too fast to be contained by physical walls, so they are confined magnetically.
(a) How fast would two nuclei have to move so that in a head-on collision they would get close enough to fuse? (Treat the nuclei as point charges, and assume that a separation of 1.0 X 10-15 is required for fusion.)
(b) What strength magnetic field is needed to make deuterium nuclei with this speed travel in a circle of diameter 2.50 m?

Step by Step Solution

3.49 Rating (149 Votes )

There are 3 Steps involved in it

1 Expert Approved Answer
Step: 1 Unlock

IDENTIFY In part a apply conservation of energy to the motion of the two nuclei In part b appl... View full answer

blur-text-image
Question Has Been Solved by an Expert!

Get step-by-step solutions from verified subject matter experts

Step: 2 Unlock
Step: 3 Unlock

Document Format (1 attachment)

Word file Icon

P-E-M-F (164).docx

120 KBs Word File

Students Have Also Explored These Related Electricity and Magnetism Questions!