A 4.5-cm-tall object is placed 28 cm in front of a spherical mirror. It is desired to produce a virtual image that is upright and 3.5 cm tall.  b) Where is the image located ? c) What is the focal length ?  A. -38 cm   B. 98 cm   C. -98 cm   D. 68 cm   E. -68 cm d) What is the radius of curvature ?

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Chapter18: Electric Charge And Electric Field
Section: Chapter Questions
Problem 9CQ: Figure 18.43 shows the charge distribution in a water molecule, which is called a polar molecule...
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A 4.5-cm-tall object is placed 28 cm in front of a spherical mirror. It is desired to produce a virtual image that is upright and 3.5 cm tall. 

b) Where is the image located ?

c) What is the focal length ?

 A. -38 cm

  B. 98 cm

  C. -98 cm

  D. 68 cm

  E. -68 cm

d) What is the radius of curvature ?

o Coulomb Constant: k = 9.0 x 10° N.m2/c2
%3D
o charge of an electron: qe = -1.6 x 1019c
o charge of a proton: qp = +1.6 x 10-19 c
mass of an electron: me = 9.11 x 1031
kg
mass of a proton: mp = 1.67 x 10 27
kg
o permittivity of free space: ɛ0 = 8.8 x 10-12
N-1.m 2.c2
o pie: n = 3.1416
permeability of free space, µo = 4t x 10"7
T.m.A-1
3.0 x 108 m/s
o s peed of light: c =
o s peed of sound in water: v = 1493 m/s
o gravitational acceleration: g = 9.81 m/s2
o Density of Copper:
o Resistivity of Aluminium:
o Resistivity of Copper:
p= 9.0 g/cm3
2.75 x 10-2. m
1.72x 10-82. m
o Avogadro's number: »,-6.022x 10mot -1)
Boltzmann constant: 1.38064852 x 10
23 m2 kg s2 K-1
S
Transcribed Image Text:o Coulomb Constant: k = 9.0 x 10° N.m2/c2 %3D o charge of an electron: qe = -1.6 x 1019c o charge of a proton: qp = +1.6 x 10-19 c mass of an electron: me = 9.11 x 1031 kg mass of a proton: mp = 1.67 x 10 27 kg o permittivity of free space: ɛ0 = 8.8 x 10-12 N-1.m 2.c2 o pie: n = 3.1416 permeability of free space, µo = 4t x 10"7 T.m.A-1 3.0 x 108 m/s o s peed of light: c = o s peed of sound in water: v = 1493 m/s o gravitational acceleration: g = 9.81 m/s2 o Density of Copper: o Resistivity of Aluminium: o Resistivity of Copper: p= 9.0 g/cm3 2.75 x 10-2. m 1.72x 10-82. m o Avogadro's number: »,-6.022x 10mot -1) Boltzmann constant: 1.38064852 x 10 23 m2 kg s2 K-1 S
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