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1: in 1: not out 1: not in 1: out 2: in 2: not out 2: not in 2: out Eye Compound Microscope: Step3 General Direction of Light Rays Passing thru Lenses
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Eye
Compound Microscope: Step1
Object 1
Lens 1 Lens 2
Eye
Compound Microscope: Step2
General Direction of Light RaysPassing thru LensesObject 1
Lens 1 Lens 2
1: in 1: not out
1: not in 1: out
2: in 2: not out
2: not in 2: out
Eye
Compound Microscope: Step3
General Direction of Light RaysPassing thru Lenses
1: in 1: not out
1: not in 1: out
2: in 2: not out
2: not in 2: out
F1
Eye
Compound Microscope: Step4
1: in 1: not out
1: not in 1: out
2: in 2: not out
2: not in 2: out
F1
d1
Eye
Compound Microscope: Step5
1: in 1: not out
1: not in 1: out
2: in 2: not out
2: not in 2: out
F1
d1 d1’
Eye
Compound Microscope: Step6
1: in 1: not out
1: not in 1: out
2: in 2: not out
2: not in 2: out
F1
d2’
d1 d1’
Eye
Compound Microscope: Step7
1: in 1: not out
1: not in 1: out
2: in 2: not out
2: not in 2: out
F2
F1
d2
d2’
d1 d1’
Eye
Compound Microscope: Step8
1: in 1: not out
1: not in 1: out
2: in 2: not out
2: not in 2: out
F2
F1
d2
d2’
d1 d1’
L
Eye
Compound Microscope: Step9
1: in 1: not out
1: not in 1: out
2: in 2: not out
2: not in 2: out
h1’h1
F2
F1
d2
d2’
d1 d1’
L
Eye
Compound Microscope: Step10
1: in 1: not out
1: not in 1: out
2: in 2: not out
2: not in 2: out
h2’
h1’=h2
h1F2
F1
d2
d2’
d1 d1’
L
Eye
Compound Microscope: Step11
θe
|h2’|=he
|d2’|=de
Eye
Compound Microscope: Step12
θrefhO=h1
Eye
Compound Microscope: Step13
dnear
Compound Microscope: Step14
θe
|h2’|=he
|d2’|=de
θrefhO=h1
dnear
MΘ = θe / θref
1: in 1: not out
1: not in 1: out
2: in 2: not out
2: not in 2: out
θe
h2’
h1’=h2
h1F2
F1
d2
d2’
d1 d1’
L
Eye
Compound Microscope
1: in 1: not out
1: not in 1: out
2: in 2: not out
2: not in 2: out
θe
|h2’|=he
h1’=h2
h1F2
F1
d2
|d2’|=de
d1 d1’
L
Eye
Compound Microscope