Two 28.0 -cm -focal-length converging lenses are placed 16.5 cm apart. An object is placed 38.0 cm in front of one lens. Where will the final image formed by the second lens be located? d;2 = cm beyond the second lens Submit Request Answer • Part B What is the total magnification? Πνα ΑΣφ m =

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Chapter1: Units, Trigonometry. And Vectors
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please help me with all 3  parts of this question! 

Constants I Periodio
Two 28.0 -cm -focal-length converging lenses are
placed 16.5 cm apart. An object is placed 38.0 cm
in front of one lens.
Where will the final image formed by the second lens be located?
?
d;2 =
cm beyond the second lens
Submit
Request Answer
• Part B
What is the total magnification?
Ηνα ΑΣφ
m =
Transcribed Image Text:Constants I Periodio Two 28.0 -cm -focal-length converging lenses are placed 16.5 cm apart. An object is placed 38.0 cm in front of one lens. Where will the final image formed by the second lens be located? ? d;2 = cm beyond the second lens Submit Request Answer • Part B What is the total magnification? Ηνα ΑΣφ m =
Constants I Perio
A light beam strikes a 2.3 cm -thick piece of plastic with
a refractive index of 1.62 at a 45° angle. The plastic is
on top of a 2.8 cm -thick piece of glass for which
n = 1.47.(Figure 1)
Part A
What is the distance D in the figure?
Express your answer to two significant figures and include the appropriate units.
Figure
< 1 of 1
HA
?
45° |
D =
Value
Units
n1 = 1.62
Submit
Request Answer
n2 = 1.47
Provide Feedback
D = ?
Transcribed Image Text:Constants I Perio A light beam strikes a 2.3 cm -thick piece of plastic with a refractive index of 1.62 at a 45° angle. The plastic is on top of a 2.8 cm -thick piece of glass for which n = 1.47.(Figure 1) Part A What is the distance D in the figure? Express your answer to two significant figures and include the appropriate units. Figure < 1 of 1 HA ? 45° | D = Value Units n1 = 1.62 Submit Request Answer n2 = 1.47 Provide Feedback D = ?
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