a 2 cm object is 10 cm from a convex lens that has a focal length of 4.4 cm. the image is 8 cm from the…

a 2 cm object is 10 cm from a convex lens that has a focal length of 4.4 cm. the image is 8 cm from the lens. the height of the image, to the tenths place, is cm.
Answer
Explanation:
Step1: Recall magnification formula
The magnification formula is $m=\frac{h_i}{h_o}=-\frac{d_i}{d_o}$, where $h_i$ is the height of the image, $h_o$ is the height of the object, $d_i$ is the image - distance and $d_o$ is the object - distance.
Step2: Identify given values
We are given that $h_o = 2$ cm, $d_o=10$ cm, and $d_i = 8$ cm.
Step3: Rearrange the magnification formula to solve for $h_i$
From $m=\frac{h_i}{h_o}=-\frac{d_i}{d_o}$, we can solve for $h_i$: $h_i=-\frac{d_i}{d_o}\times h_o$.
Step4: Substitute the values
Substitute $d_i = 8$ cm, $d_o = 10$ cm, and $h_o=2$ cm into the formula: $h_i=-\frac{8}{10}\times2$. $h_i=- 1.6$ cm. The negative sign indicates that the image is inverted. We are interested in the magnitude of the height.
Answer:
$1.6$