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An object O is placed 30 cm in front of a concave mirror of focal length 10 cm - Leaving Cert Physics - Question d - 2005

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An object O is placed 30 cm in front of a concave mirror of focal length 10 cm. How far from the mirror is the image formed? (7)

Worked Solution & Example Answer:An object O is placed 30 cm in front of a concave mirror of focal length 10 cm - Leaving Cert Physics - Question d - 2005

Step 1

Use the Mirror Formula

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Answer

To find the distance of the image formed by a concave mirror, we can use the mirror formula:

1f=1u+1v\frac{1}{f} = \frac{1}{u} + \frac{1}{v}

where:

  • (f) is the focal length of the mirror,
  • (u) is the object distance (which is negative for a concave mirror), and
  • (v) is the image distance.

Step 2

Identify the Values

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Answer

From the question, we know that:

  • The focal length, (f = -10) cm (negative for a concave mirror).
  • The object distance, (u = -30) cm (negative in the case of mirrors as the object is in front of the mirror).

Step 3

Substitute the Values into the Mirror Formula

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Answer

Now substituting the values into the mirror formula:

110=130+1v\frac{1}{-10} = \frac{1}{-30} + \frac{1}{v}

Step 4

Solve for Image Distance v

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Answer

Rearranging the equation, we have:

1v=110+130\frac{1}{v} = \frac{1}{-10} + \frac{1}{30}

To find (\frac{1}{v}), we need a common denominator:

1v=3+130=230\frac{1}{v} = \frac{-3 + 1}{30} = \frac{-2}{30}

Thus,

v=15 cmv = -15\ \text{cm}

The negative sign indicates that the image is formed on the same side as the object, which is typical for a virtual image in a concave mirror.

Step 5

Conclusion

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Answer

Therefore, the image is formed 15 cm from the mirror. Since the image distance is negative, it confirms that it is a virtual image. The final answer can be expressed as:

  • The distance of the image from the mirror is 15 cm.

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