Question
help please!

6. Complete the table for the following Diverging lens cases. Case f (cm) do(cm) di (cm) ho (cm) hi(cm) 6 -20 -20 -20 15 30 -

help please!!
7. A compound microscope consists of an objective lens with a focal length of 15.0 mm and an eye piece with a focal length of
0 0
Add a comment Improve this question Transcribed image text
Answer #1

ek -24 -f divesqiog en 蜉ing-len ho do. 규 ヲ June 2015 SMTWTFS 5 678 9 10 1 2 13 14 15 17 18 19 20 21 22 23 24 25 26 2 28 29 30JUNE Wednesday Week he = ni S나り 6o -f O 06 686 ラード ) 4-385 bay 2016 10111213141,传 I7 I 9 0 212 2 T.여 ropThursday 201 Week 24 do oom obie The leng are dce Conve -t June 2016 SMT W T F S 5 67 9 10 1 12 3 14 15 16 17 15 19 20 21 2225 mm Week 24 m) Qi and do an image and okject disbnis -(-128-3,) 8 uly 2016 30 3 45 678 9 0 2 3 14 15 t6 13 9 221 22 23 24 2

Add a comment
Know the answer?
Add Answer to:
help please! help please!! 6. Complete the table for the following Diverging lens cases. Case f...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • PLEASE SHOW YOUR WORK 7. You have 2 convex lens (fi = 20 cm and f...

    PLEASE SHOW YOUR WORK 7. You have 2 convex lens (fi = 20 cm and f 6 cm) and you want to build a microscope a) Which lens should be the objective? Which should be the eyepiece? o Objective has a focal length of 6 cm, so the eyepiece must have a focal length of 20 cm b) How far apart should the 2 lenses be to achieve an angular magnification of 3.125? o Use magnification for a microscope equation...

  • 6. The objective" and "eyepiece" of a microscope are both converging lenses and have focal lengths...

    6. The objective" and "eyepiece" of a microscope are both converging lenses and have focal lengths of 15.0 mm and 25.5 mm. A distance of 61.0 mm separates the lenses. The microscope is being used to examine an object placed at a distance of 24.1 mm in front of the objective (first lens). (a) Find the location of the final image. (b) Is the image virtual or real? Is it greater or smaller than the object? : Universal gas constant...

  • The distance between the objective and eyepeices lenses in a microscope is 20 cm. The objective...

    The distance between the objective and eyepeices lenses in a microscope is 20 cm. The objective lens has a focal length of 5.0mm. What eye piece focal lengthe will give the microscope an overall angular magnification of 250?

  • 20 cm A diverging lens with a focal length of -10 cm is on the same...

    20 cm A diverging lens with a focal length of -10 cm is on the same axis as a converging lens with a focal length of +15 cm as illustrated. The distance between the lenses is 20 cm. An object is placed 30 cm to the left of the diverging lens. a) (10 Points) Where is the final image formed? (Submit a PDF file with a maximum size of 8 MB) Choose File no file selected b) (10 Points) Calculate...

  • 20 cm A diverging lens with a focal length of -10 cm is on the same...

    20 cm A diverging lens with a focal length of -10 cm is on the same axis as a converging lens with a focal length of +15 cm as illustrated. The distance between the lenses is 20 cm. An object is placed 30 cm to the left of the diverging lens. a) (10 Points) Where is the final image formed? (Submit a PDF file with a maximum size of 8 MB) Choose File No file chosen b) (10 Points) Calculate...

  • Two systems are formed from a converging lens and a diverging lens, as shown in parts...

    Two systems are formed from a converging lens and a diverging lens, as shown in parts a and b of the drawing. (The point labeled "Fconverging" is the focal point of the converging lens.) An object is placed inside the focal point of lens 1 at a distance of 8.60 cm to the left of lens 1. The focal lengths of the converging and diverging lenses are 15.0 and -20.0 cm respectively. The distance between the lenses is 50.0 cm....

  • A converging lens is placed 32.0 cm to the right of a diverging lens of focal...

    A converging lens is placed 32.0 cm to the right of a diverging lens of focal length 13.0 cm. A beam of paralel light enters the diverging lens from the left, and the beam is agai parallel when it emerges from the converging lens. Calculate the focal length of the converging lens. Need Help? 24 -3 points SerCP10 23 P041.Wi My Notes Ask Your Two converging lenses, each of focal length 15.2 cm, are placed 40.9 cm apart, and an...

  • Two systems are formed from a converging lens and a diverging lens, as shown in parts...

    Two systems are formed from a converging lens and a diverging lens, as shown in parts a and b of the drawing. (The point labeled "Fconverging" is the focal point of the converging lens.) An object is placed inside the focal point of lens 1 at a distance of 6.4 cm to the left of lens 1. The focal lengths of the converging and diverging lenses are 15.0 and -20.0 cm respectively. The distance between the lenses is 50.0 cm....

  • Now, a diverging lens with focal length having a magnitude of 20 cm is placed 10...

    Now, a diverging lens with focal length having a magnitude of 20 cm is placed 10 cm to the right of the converging lens in problem that has a 2 cm tall object placed 12 cm to the left of a converging lens with focal length of magnitude 15 cm. Determine the location of the final image formed by both lenses (in relation to the diverging lens) and the magnification of the final image. State whether the final image is...

  • need help please a microscope with a converging lens the eye part has a focal lenght...

    need help please a microscope with a converging lens the eye part has a focal lenght f2=1.42cm . at the other end is another converging lens the objective that has a focal lenght of f1=14.65cm. when you place a bug you want to examine at a distance of s1=3.20cm from the objective. what is the overall lenght of the microscope to view the bug with a relaxed a eye. hint: a normal eye will expect to find an image at...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT