Inches of mercury.
inHgs to Pascals Converter — inHg to Pa
Convert inHg (inHg) to Pascal (Pa) using the exact conversion factor (1 inhg = 3,386.389 pascal). See the formula, worked examples, conversion table, history, and common uses.
inHgs to Pascals converter
Converter
Engineering Converter
Convert common stress, force, torque, power, and energy units used in engineering.
The pascal is one newton per square meter.
Result = input x 3386.389 / 1.
Stress Pressure units are compatible.
Reserved above the conversion cards and below the converter.
About Converting inHgs to Pascals
inHg and Pascal both measure a quantity used in structural or mechanical engineering — commonly stress, pressure, force, torque, power, or energy — where converting between the unit conventions used in different regions, industries, or equipment specifications is a routine part of design work. Specifically: Inches of mercury, and the pascal is one newton per square meter.
Formula
pascals = inhgs × 3386.389
This factor comes from each unit's defined relationship to the category's base unit: 1 inhg equals 3386.389 base units, and 1 pascal equals 1 base unit, so dividing one by the other gives the direct inhg-to-pascal factor of 3386.389.
Simple example
1 inHg × 3386.389 = 3,386.389 Pa
1 inhg = 3,386.389 pascals.
Real-world example
100 inHg × 3386.389 = 338,638.9 Pa
100 inhgs = 338,638.9 pascals.
Conversion table
| inHg (inHg) | Pascal (Pa) |
|---|---|
| 1 inHg | 3,386.389 Pa |
| 10 inHg | 33,863.89 Pa |
| 50 inHg | 169,319.45 Pa |
| 100 inHg | 338,638.9 Pa |
| 500 inHg | 1,693,194.5 Pa |
| 1,000 inHg | 3,386,389 Pa |
Reverse conversion: Pascal to inHg
1 Pa × 0.0002952998016 = 0.0002952998 inHg
1 pascal = 0.0002952998 inhgs.
inhgs = pascals × 0.000295299801647
For a page dedicated to this direction, see Pascal to inHg.
Understanding the inHg (inHg)
Inches of mercury.
Understanding the Pascal
Pascal (Pa) measures pressure. The pascal is the SI derived unit of pressure: one newton of force per square meter. It is classified as a SI derived unit.
Where it's used: Standard scientific pressure unit worldwide
Uses of the Pascal today
- Scientific and engineering pressure measurement worldwide
- Meteorology (often as hectopascals, equivalent to millibars)
- Material science (stress and strength, typically in megapascals)
History of the Pascal
The pascal is named after Blaise Pascal, whose 17th-century experiments clarified the physics of fluid pressure and vacuum. It was adopted as the SI derived unit of pressure in 1971, replacing the older, non-coherent CGS pressure units used in much scientific work up to that point.
Historical origin. Pascal was not the invention of a single named person; it developed through the process described above.
Pascal — sources
- BIPM SI Brochure — Coherent derived units — Defines the pascal as the SI unit of pressure.
Reserved between the cards and the FAQ so the page stays balanced.
Frequently asked questions
How many pascals are in 1 inhg?
1 inhg equals 3,386.389 pascals, using the exact defined conversion factor rather than an estimate.
How do I convert inhg to pascal?
Multiply the inhg value by 3386.389. The converter above does this instantly to whatever precision you set.
How do I convert pascal back to inhg?
Use the reverse factor: 1 pascal equals 0.0002952998 inhgs. You can also use the swap control in the converter above to flip the direction instantly.
What is a inhg?
inHg (inHg) is a unit of engineering.
What is a pascal?
Pascal (Pa) measures pressure. The pascal is the SI derived unit of pressure: one newton of force per square meter. It is classified as a SI derived unit.
Is the inhg to pascal conversion exact?
Yes. Both inhg and pascal are defined by fixed standards rather than physical artifacts, so the factor of 3386.389 used above is exact to as many digits as you choose to display.
Why do engineering unit conventions vary so much by region and industry?
Pressure, force, and stress can be expressed in metric (pascal, newton), US customary (psi, pound-force), or older and industry-specific units (atmosphere, torr, kip) depending on the country, industry, and even the equipment manufacturer, which is why engineers routinely need to convert between them when working across specs from different sources.