DIVERGING Lens image formation 4-750- -10am- VIRTUAL image object 2 =-4.29 cm Now make the transition from Lens 1 to Lens 2 (here Lens 2 is the Diverging lens). The First Image is the Object (Object 2) to Lens 2. The focal length of the converging lens is 18.0 cm. The distance between the two lenses is 62.0 cm. Pay attention to on which side of Lens 2 is Object 2 located. This determines whether Object 2 is a REAL object or a VIRTUAL object. Find the object distance do2 to Lens 2. Include a proper sign. Keep 2 decimal places. Enter a number Submit cm 6 (5 attempts remaining) Find the image distance di2 of the Second Image (Firnal Image) formed by Lens 2. Include a proper sign. Keep 2 decimal places. Enter a number cm 0 Submit (5 attempts remaining) On which side of the Converging lens (Lens 2) is the Final image located? Select your answer from one of the following options. a. Left side b. Right side Correct (100.0%) Submit Is the Final Image a Real Image or a Virtual Image? Select your answer from one of the following options. a. Real image. Correct (100.0%) Submit b. Virtual image. Find the height of the Final image hi2. Include a proper sign, keep 3 decimal places. Keep in mind that the object for Lens 2 is NOT the original object. Enter a number cm → Submit (5 attempts remaining)

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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DIVERGING Lens image formation
4-750-
-10am-
VIRTUAL image
object
2
=-4.29 cm
Now make the transition from Lens 1 to Lens 2 (here Lens 2 is the Diverging lens). The First Image is the Object (Object 2) to Lens 2.
The focal length of the converging lens is 18.0 cm. The distance between the two lenses is 62.0 cm.
Pay attention to on which side of Lens 2 is Object 2 located. This determines whether Object 2 is a REAL object or a VIRTUAL
object.
Find the object distance do2 to Lens 2. Include a proper sign. Keep 2 decimal places.
Enter a number
Submit
cm 6
(5 attempts remaining)
Find the image distance di2 of the Second Image (Firnal Image) formed by Lens 2. Include a proper sign. Keep 2 decimal places.
Enter a number
cm 0
Submit (5 attempts remaining)
On which side of the Converging lens (Lens 2) is the Final image located?
Select your answer from one of the following options.
a. Left side
b. Right side
Correct (100.0%)
Submit
Is the Final Image a Real Image or a Virtual Image?
Select your answer from one of the following options.
a. Real image.
Correct (100.0%)
Submit
b. Virtual image.
Find the height of the Final image hi2. Include a proper sign, keep 3 decimal places.
Keep in mind that the object for Lens 2 is NOT the original object.
Enter a number
cm →
Submit
(5 attempts remaining)
Transcribed Image Text:DIVERGING Lens image formation 4-750- -10am- VIRTUAL image object 2 =-4.29 cm Now make the transition from Lens 1 to Lens 2 (here Lens 2 is the Diverging lens). The First Image is the Object (Object 2) to Lens 2. The focal length of the converging lens is 18.0 cm. The distance between the two lenses is 62.0 cm. Pay attention to on which side of Lens 2 is Object 2 located. This determines whether Object 2 is a REAL object or a VIRTUAL object. Find the object distance do2 to Lens 2. Include a proper sign. Keep 2 decimal places. Enter a number Submit cm 6 (5 attempts remaining) Find the image distance di2 of the Second Image (Firnal Image) formed by Lens 2. Include a proper sign. Keep 2 decimal places. Enter a number cm 0 Submit (5 attempts remaining) On which side of the Converging lens (Lens 2) is the Final image located? Select your answer from one of the following options. a. Left side b. Right side Correct (100.0%) Submit Is the Final Image a Real Image or a Virtual Image? Select your answer from one of the following options. a. Real image. Correct (100.0%) Submit b. Virtual image. Find the height of the Final image hi2. Include a proper sign, keep 3 decimal places. Keep in mind that the object for Lens 2 is NOT the original object. Enter a number cm → Submit (5 attempts remaining)
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