- Image height
- 20
- Object height
- 5
4.00
Open with these values4.00
Result: 4.00Magnification is the image height divided by the object height. Above 1 the image is enlarged, below 1 it is reduced, and exactly 1 means it is the same size. Both heights must use the same unit; the units cancel and the answer is a plain number.
4.00
Open with these values0.25
Open with these values-3.00
Open with these valuesm = image height ÷ object height
| Image height, object height | Reading | Magnification |
|---|---|---|
| 20, 5 | Enlarged four times, 400 % | 4 |
| 150, 25 | Enlarged six times, 600 % | 6 |
| 10, 10 | Same size, 100 % | 1 |
| 3, 4 | Reduced to three quarters, 75 % | 0.75 |
| 5, 20 | Reduced to a quarter, 25 % | 0.25 |
| -15, 5 | Inverted and three times larger | -3 |
Divide the image height by the object height, both measured in the same unit. An image 20 mm tall of an object 5 mm tall gives 20 ÷ 5 = 4, so the image is four times larger.
Above 1 the image is enlarged, as in a microscope or a magnifying glass. Below 1 it is reduced, as when a camera lens shrinks a distant scene onto a sensor. Exactly 1 means image and object are the same size.
Multiply by 100. A magnification of 4 is 400 %, and one of 0.25 is 25 %. The ratio and the percentage describe the same thing.
No, as long as both heights use the same one. Magnification is a ratio, so the units cancel: 20 mm ÷ 5 mm gives the same 4 as 2 cm ÷ 0.5 cm. Mixing units is the only way to get a wrong answer here.
A negative image height marks an inverted image, and the ratio carries that sign through. Enter −15 for an image that is upside down against an object of 5 and you get −3: three times larger and inverted.
The formula divides by the object height, and division by zero is undefined. An object of zero height has no image to compare against, so the calculator shows no result.
Information, not professional advice.
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