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(Solved): (a) An electron and a \( 0.0480 \mathrm{~kg} \) bullet each have a velocity of magnitude \( 490 \m ...



(a) An electron and a \( 0.0480 \mathrm{~kg} \) bullet each have a velocity of magnitude \( 490 \mathrm{~m} / \mathrm{s} \),

(a) An electron and a \( 0.0480 \mathrm{~kg} \) bullet each have a velocity of magnitude \( 490 \mathrm{~m} / \mathrm{s} \), accurate to within \( 0.0100 \% \). Within what lower limit could we determine the position of each object along the direction of the velocity? (Give the lower limit for the electron in \( \mathrm{mm} \) and that for the bullet in \( \mathrm{m} \).) for the electron for the bullet \( \mathrm{m} \) relativistic, traveling at \( 0.200 \mathrm{c} \) measured with the same accuracy? (Give the lower limit for the electron in \( \mathrm{nm} \) and that for the bullet in \( \mathrm{m} \).) for the electron \( \quad n \ln \) for the bullet \( \mathrm{m} \)


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