Answer:
= 154 cm
= 216.6 cm
The image is real
Step-by-step explanation:
= height of the object = 3.20 cm
= height of the image = 4.50 cm
f = focal length of the converging lens = 90 cm
= object distance from the lens = ?
= image distance from the lens = ?
using the equation for magnification
![(h_(i))/(h_(o))= ( d_(i))/(d_(o))](https://img.qammunity.org/2020/formulas/physics/college/wwy2f39zx5r40hvwjkmqw2uth6yybtzbrk.png)
![(4.50)/(3.20)= (d_(i))/(d_(o))](https://img.qammunity.org/2020/formulas/physics/college/5k7uji2ommbo65txzxrqn81733lg3s3peh.png)
= 1.40625
eq-1
using the lens equation
![(1)/(d_(i)) + (1)/(d_(o)) = (1)/(f)](https://img.qammunity.org/2020/formulas/physics/college/79bsh4p1c3wrlpxfninapf7vb54tmzh5eq.png)
using eq-1
![(1)/(( 1.40625)d_(o)) + (1)/(d_(o)) = (1)/(90)](https://img.qammunity.org/2020/formulas/physics/college/9d3b7g1qr4opr8v618r9xpffj6hkj7p55b.png)
= 154 cm
Using eq-1
= 1.40625
= 1.40625 (154)
= 216.6 cm
The image is real