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It has been recently suggested that the 17th century Dutch artist Rembrandt used a concave mirror to help him etch self-portraits by projecting an inverted image of himself onto a copper sheet - Leaving Cert Physics - Question c - 2017

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It has been recently suggested that the 17th century Dutch artist Rembrandt used a concave mirror to help him etch self-portraits by projecting an inverted image of ... show full transcript

Worked Solution & Example Answer:It has been recently suggested that the 17th century Dutch artist Rembrandt used a concave mirror to help him etch self-portraits by projecting an inverted image of himself onto a copper sheet - Leaving Cert Physics - Question c - 2017

Step 1

Draw a ray diagram to illustrate how Rembrandt used a concave mirror in this way

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Answer

To illustrate how Rembrandt used a concave mirror, draw the following:

  1. Concave Mirror: Represent the concave mirror as a curved line with the reflective surface facing the object.
  2. Object: Place a point (the object) outside the focal point (F) of the mirror.
  3. Rays: Draw two rays from the object:
    • Ray 1: A straight line from the top of the object to the mirror, which reflects through the focal point.
    • Ray 2: A straight line from the top of the object parallel to the principal axis, which then reflects through the focal point.
  4. Image Location: Mark the intersection of the two reflected rays, which will indicate the location of the inverted image on the copper sheet.

Step 2

(i) the distance from the sheet to the mirror

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Answer

To find the distance from the sheet to the mirror, we can use the mirror formula:

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

where:

  • ff is the focal length of the mirror (60 cm).
  • uu is the distance from the object to the mirror.
  • vv is the distance from the mirror to the image.

Given that the image is half the size of the object, we have: m=himagehobject=12m = \frac{h_{image}}{h_{object}} = \frac{1}{2}

This means: v=2uv = 2u

Substituting vv into the mirror formula gives: 160=1u+12u\frac{1}{60} = \frac{1}{u} + \frac{1}{2u}

Combining the terms: 160=32u\frac{1}{60} = \frac{3}{2u}

Solving for uu: u=90 cmu = 90 \text{ cm}

Thus, vv will be: v=2u=180 cmv = 2u = 180 \text{ cm}

The distance from the sheet to the mirror is therefore 90 cm.

Step 3

(ii) the distance from the object to the mirror

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Answer

As calculated above in part (i), the distance from the object to the mirror is:

u=90 cmu = 90 \text{ cm}

Step 4

Explain why this image was not of use to Rembrandt

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Answer

A concave mirror can produce an upright image; however, this is typically only valid when the object is located within the focal length. Since Rembrandt was using the mirror to project an inverted image onto the copper sheet to etch self-portraits, a virtual, upright image could not be formed on the sheet. Therefore, this image type would not assist him in creating accurate depictions, as it did not allow for the necessary projection to be captured as intended.

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