The formula to calculate the Object Distance in Concave Mirror with Virtual Image is:
\[ u_{\text{concave, virtual}} = \frac{(f_{\text{concave, virtual}} \cdot v_{\text{concave, virtual}})}{(f_{\text{concave, virtual}} - v_{\text{concave, virtual}})} \]
Where:
Object Distance in Concave Mirror Virtual Image is the distance between the object and the virtual image formed by a concave mirror, which is used to determine the nature and position of the image.
Let's assume the following values:
Using the formula:
\[ u_{\text{concave, virtual}} = \frac{(-0.173334 \cdot -0.2)}{(-0.173334 - -0.2)} \]
Evaluating:
\[ u_{\text{concave, virtual}} = 1.30003750093752 \text{ m} \]
The Object Distance in Concave Mirror Virtual Image is 1.30003750093752 m.
Focal Length of Concave Mirror with Virtual Image (m) | Image Distance of Concave Mirror Virtual Image (m) | Object Distance in Concave Mirror Virtual Image (m) |
---|---|---|
-0.18 | -0.2 | 1.800000000000 |
-0.179 | -0.2 | 1.704761904762 |
-0.178 | -0.2 | 1.618181818182 |
-0.177 | -0.2 | 1.539130434783 |
-0.176 | -0.2 | 1.466666666667 |
-0.175 | -0.2 | 1.400000000000 |
-0.174 | -0.2 | 1.338461538462 |
-0.173 | -0.2 | 1.281481481481 |
-0.172 | -0.2 | 1.228571428571 |
-0.171 | -0.2 | 1.179310344828 |