Object O stands on the central axis of a thin, symmetric lens. The table gives the object distance p, the type of lens and the focal distance f. Find the image distance i and the lateral magnification m of the object, including signs. p (cm) Lens f (cm) | (cm) +13 converging *17 * sign not given Describe the image. (Select all that apply.) O real virtual O upright inverted on the same side of the lens as O on the opposite side of the lens

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**Lens and Image Formation**

Object \( O \) stands on the central axis of a thin, symmetric lens. The table gives the object distance \( p \), the type of lens, and the focal distance \( f \). Find the image distance \( i \) and the lateral magnification \( m \) of the object, including signs.

| \( p \) (cm) | Lens       | \( f \) (cm) | \( i \) (cm) | \( m \) |
|--------------|------------|--------------|--------------|---------|
| +13          | converging | *17          |              |         |

* \( * \) sign not given

**Describe the image. (Select all that apply.)**

- [ ] real
- [ ] virtual
- [ ] upright
- [ ] inverted
- [ ] on the same side of the lens as \( O \)
- [ ] on the opposite side of the lens

The task involves determining whether the image is real or virtual, upright or inverted, and its location relative to the lens based on the given information.
Transcribed Image Text:**Lens and Image Formation** Object \( O \) stands on the central axis of a thin, symmetric lens. The table gives the object distance \( p \), the type of lens, and the focal distance \( f \). Find the image distance \( i \) and the lateral magnification \( m \) of the object, including signs. | \( p \) (cm) | Lens | \( f \) (cm) | \( i \) (cm) | \( m \) | |--------------|------------|--------------|--------------|---------| | +13 | converging | *17 | | | * \( * \) sign not given **Describe the image. (Select all that apply.)** - [ ] real - [ ] virtual - [ ] upright - [ ] inverted - [ ] on the same side of the lens as \( O \) - [ ] on the opposite side of the lens The task involves determining whether the image is real or virtual, upright or inverted, and its location relative to the lens based on the given information.
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