Convert any number to scientific notation, engineering notation, and E notation. See the mantissa, exponent, SI prefix, and full number side by side.
How do you write 5000 in scientific notation?
Convert any number to scientific notation, engineering notation, and E notation. See the mantissa, exponent, SI prefix, and full number side by side.
5000 rewritten so the mantissa sits between 1 and 10 and the exponent counts how far the decimal point moved. The working is shown rather than just the answer, because the part people get wrong is the sign of the exponent, not the arithmetic. Type any other number into the field below, or switch the mode to go the other way and turn a notation back into an ordinary number.
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What is scientific notation?
Scientific notation expresses any number as a product of two parts: a mantissa between 1 and 10 (exclusive) and a power of 10. The speed of light is 299,792,458 m/s - in scientific notation that becomes 2.998 × 10⁸. The mass of a proton is 0.0000000000000000000000000016726 kg - in scientific notation that is 1.673 × 10⁻²⁷. This calculator converts in both directions: type a number and get the scientific form, or type a mantissa and exponent and get the full number back.
Scientific: 4.5 × 10⁻⁴
Engineering: 450 × 10⁻⁶ (exponent divisible by 3)
SI Prefix: μ (micro)
Three notation formats compared
| Format | Rule | Example (186,000) | Used in |
|---|---|---|---|
| Scientific | 1 ≤ |a| < 10 | 1.86 × 10⁵ | Physics, chemistry, astronomy |
| Engineering | Exponent divisible by 3 | 186 × 10³ | Electrical engineering, SI units |
| E notation | Same as scientific, written as aEn | 1.86E5 | Programming, spreadsheets, calculators |
Engineering notation aligns exponents with SI prefixes (kilo = 10³, mega = 10⁶, milli = 10⁻³, micro = 10⁻⁶). This makes it easy to read values with units: 4.7 × 10⁻⁹ F becomes 4.7 nF (nanofarads) without mental conversion.
SI prefix reference table
| Prefix | Symbol | Power | Example |
|---|---|---|---|
| yotta | Y | 10²⁴ | mass of Earth ~6 Yg |
| tera | T | 10¹² | 1 TB hard drive |
| giga | G | 10⁹ | 2.4 GHz WiFi |
| mega | M | 10⁶ | 5 MP camera |
| kilo | k | 10³ | 5 km distance |
| milli | m | 10⁻³ | 500 mL bottle |
| micro | μ | 10⁻⁶ | red blood cell ~7 μm |
| nano | n | 10⁻⁹ | CPU transistor ~5 nm |
| pico | p | 10⁻¹² | capacitor 100 pF |
Practical examples
The speed of light is 299,792,458 m/s. Enter this number. Scientific: 2.998 × 10⁸. Engineering: 299.8 × 10⁶. SI prefix: M (mega), meaning roughly 300 megameters per second. The calculator shows all formats at once.
Avogadro's number is approximately 6.022 × 10²³. Select Scientific notation Number, enter mantissa 6.022 and exponent 23. The calculator shows the full number: 602,200,000,000,000,000,000,000 - a number so large it has no common SI prefix (yotta = 10²⁴ is the closest).
A modern CPU transistor gate is about 0.000000005 meters (5 nm). Enter 0.000000005: scientific notation gives 5 × 10⁻⁹, engineering gives 5 × 10⁻⁹ (already aligned), and SI prefix is n (nano). That is why we say "5 nanometer process."
If a country's national debt is 33,100,000,000,000 dollars, enter that number. Scientific: 3.31 × 10¹³. Engineering: 33.1 × 10¹². SI prefix: T (tera). In everyday language: 33.1 trillion dollars. The engineering notation makes it immediately clear which "illion" bracket the number falls in.
Temperature of deep space: approximately -270.45 degrees Celsius (2.7 K). Enter -270.45. Scientific: -2.704 × 10². The sign is preserved. The exponent (2) means the number is in the hundreds range. Negative numbers follow the same rules - only the sign of the mantissa changes.
Enter 123456789 with 2 significant figures: 1.2 × 10⁸. With 4 figures: 1.235 × 10⁸. With 8 figures: 1.2345679 × 10⁸. Increasing precision keeps more original digits in the mantissa but never changes the exponent. Use 2-3 figures for rough estimates and 6-8 for laboratory work.
How the conversion works
To convert a number to scientific notation: find the position of the first non-zero digit. Move the decimal point so that exactly one non-zero digit is to its left. Count how many places you moved it - that becomes the exponent. Moving left gives a positive exponent (the number was large), moving right gives a negative exponent (the number was small).
- 186,000 move decimal 5 places left 1.86 × 10⁵
- 0.00045 move decimal 4 places right 4.5 × 10⁻⁴
- 7.3 already between 1 and 10 7.3 × 10⁰
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Calculator verified by the LiczGrupa.pl team
Content, formulas and results have been reviewed for accuracy and relevance by our team of specialists.

Reviewed by: Patryk Matyjasik