Cups to Milliliters Converter (cup to mL)
Convert cups (cup) to milliliters (mL) instantly with real-time two-way calculation, exact formulas, and comprehensive reference tables.
Conversion Formula & Exact Calculation
How to convert Cups to Milliliters: Multiply by 236.588.
Cups to Milliliters Quick Reference Table
| Cups (cup) | Milliliters (mL) |
|---|---|
| 1/8 (0.125) cup | 29.5735 mL |
| 1/4 (0.25) cup | 59.147 mL |
| 1/3 (0.333) cup | 78.862667 mL |
| 1/2 (0.5) cup | 118.294 mL |
| 2/3 (0.667) cup | 157.725333 mL |
| 3/4 (0.75) cup | 177.441 mL |
| 1 cup | 236.588 mL |
| 1 1/2 (1.5) cup | 354.882 mL |
| 2 cup | 473.176 mL |
| 2 1/2 (2.5) cup | 591.47 mL |
| 3 cup | 709.764 mL |
| 4 cup | 946.352 mL |
| 5 cup | 1,182.94 mL |
| 10 cup | 2,365.88 mL |
| 25 cup | 5,914.7 mL |
| 50 cup | 11,829.4 mL |
| 100 cup | 23,658.8 mL |
| 250 cup | 59,147 mL |
| 500 cup | 118,294 mL |
| 1,000 cup | 236,588 mL |
⚠️ 5 Fatal Metrology & Dimensional Analysis Traps
Unit conversion errors have historically caused catastrophic aerospace accidents, structural overloads, and pharmacological dosage failures. Watch out for these 5 traps:
Linear conversions do not scale linearly into area or volume. While 1 meter = 100 centimeters, 1 square meter = 10,000 cm² (100²), and 1 cubic meter = 1,000,000 cm³ (100³). Applying linear conversion ratios to surface area, HVAC ductwork, or tank volume causes severe 100× to 1,000× estimation errors.
US fluid ounces (29.57 mL) and British Imperial fluid ounces (28.41 mL) are different. Even more drastically, a US liquid gallon is 128 US fl oz (3.785 L), while a UK Imperial gallon is 160 UK fl oz (4.546 L)—a massive 20.1% volume discrepancy that causes critical miscalculations in aviation fueling and chemical synthesis.
Standard formulas (°F = °C × 1.8 + 32) apply strictly to absolute scale readings. When converting temperature differentials or temperature changes (ΔT), the +32 offset MUST be omitted: a temperature change of 1°C equals a change of exactly 1.8°F. Adding 32 to heat pump delta-T metrics, building insulation R-values, or thermal expansion calculations corrupts engineering calculations.
Hardware manufacturers sell storage in decimal SI prefixes (1 GB = 1,000,000,000 bytes = 10⁹), whereas operating systems like Windows calculate filesystem allocation in binary IEC prefixes (1 GiB = 1,073,741,824 bytes = 2³⁰). This causes a 1 TB drive to register as approximately 931 GB in OS file explorers, leading to unexpected disk partition shortfalls.
Truncating decimal places during intermediate conversion steps compounds floating-point error across multi-stage formulas. In aerospace telemetry, CNC metal fabrication, or pharmaceutical microgram compounding, conversions must retain full IEEE 754 64-bit double precision until final display formatting.