10. A particle with charge q is located a distance d from an infinite plane. The electric flux through the plane due to the charged particle is (APq/E. (B) q/2 €, (C) 0 (D) co 11. The Lagrangian of system in r and 0 coordinates is given by 1 L = = m(r² + r²8²) - U (r) (E) qd /E. The generalized momenta for this Lagrangian are A)p, = mr and pe = mr²8 B) p = mer and pe = mr² C) p = mr 2 and pe = m²r² ) pr = 0 and pe = mr²8 E) pr = mr and pe = 0

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10. A parucie with charge q is located a distance d from an infinite plane. The electric flux through
the plane due to the charged particle is
(Aq/E. (B)q/2 €,
(C) 0
(D) 00
11. The Lagrangian of system in r and 0 coordinates is given by
1
L = = m(² +r²8²) - U (r)
(E) qd /E.
The generalized momenta for this Lagrangian are
A)p, = mr and p = mr²8 B) p = mer and pe = mr²
C) p = mr 2 and pe = m²r²ė) pr = 0 and pe = mr²0 E) pr = mr and pe = 0
Pr
Transcribed Image Text:10. A parucie with charge q is located a distance d from an infinite plane. The electric flux through the plane due to the charged particle is (Aq/E. (B)q/2 €, (C) 0 (D) 00 11. The Lagrangian of system in r and 0 coordinates is given by 1 L = = m(² +r²8²) - U (r) (E) qd /E. The generalized momenta for this Lagrangian are A)p, = mr and p = mr²8 B) p = mer and pe = mr² C) p = mr 2 and pe = m²r²ė) pr = 0 and pe = mr²0 E) pr = mr and pe = 0 Pr
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