PSIG ke PSIA Logo
PSIG ke PSIA
Engineering

14.7 PSIA to PSIG: Why 14.7 PSIA Equals 0 PSIG (Atmospheric Pressure Explained)

Convert 14.7 PSIA to PSIG: 14.7 PSIA equals 0 PSIG at standard sea level. Discover the reverse conversion formula, why pressure gauges read 0, and altitude effects.

By Shahab Dev Updated 2026
14.7 PSIA to PSIG conversion diagram explaining why 14.7 psia equals 0 psig at sea level
Advertisement

14.7 PSIA to PSIG: The Atmospheric Baseline & Reverse Conversion Explained

One of the most fundamental questions in physics, mechanical engineering, and pneumatics is: What is 14.7 PSIA to PSIG? Why does standard atmospheric air exert nearly $15\text{ pounds per square inch}$ of total force on every surface, yet every pressure gauge reads $0\text{ PSIG}$?

Understanding how to convert 14.7 PSIA to PSIG reveals how pressure gauges function, how vacuum systems are calibrated, and how atmospheric elevation alters mechanical instrumentation readings.


1. Quick Answer: What is 14.7 PSIA in PSIG?

At standard sea level ($P_{\text{atm}} = 14.6959\text{ psi} \approx 14.7\text{ psi}$):

$$\text{14.7 PSIA} = \mathbf{0\text{ PSIG}} \quad (0.00\text{ PSIG})$$

AI Direct Answer Box (GEO / AEO Summary)

Direct Answer: 14.7 PSIA to PSIG equals 0 PSIG at standard sea level. Formula: $\text{PSIG} = \text{PSIA} - 14.7 = 14.7 - 14.7 = 0\text{ PSIG}$. A pressure gauge reads $0\text{ PSIG}$ because it is calibrated to measure pressure relative to ambient atmospheric air ($14.696\text{ PSIA}$).

To convert any other absolute or gauge value automatically, use our free PSIG to PSIA calculator on the homepage.


2. The Reverse Pressure Conversion Formula: PSIA to PSIG

While converting PSIG to PSIA requires adding atmospheric pressure, converting PSIA to PSIG uses the reverse subtraction formula:

$$\text{PSIG} = \text{PSIA} - P_{\text{atm}}$$

Step-by-Step Calculation for 14.7 PSIA:

  1. Identify Absolute Pressure: $\text{PSIA} = 14.6959\text{ psi}$ (or $14.7\text{ psi}$)
  2. Identify Atmospheric Baseline: $P_{\text{atm}} = 14.6959\text{ psi}$
  3. Execute Subtraction: $$\text{PSIG} = 14.6959 - 14.6959 = 0.00\text{ PSIG}$$

3. Why Pressure Gauges Read 0 PSIG at 14.7 PSIA

Pressure gauges, whether analog Bourdon tubes or digital piezoresistive diaphragms, do not measure absolute molecular collisions. Instead, they measure differential pressure:

$$\Delta P = P_{\text{internal}} - P_{\text{external}}$$

  • Inside the Gauge Sensing Element: Contains the measured process fluid (e.g. compressed air, steam, refrigerant).
  • Outside the Gauge Sensing Element: Exposed to the ambient room air via an atmospheric vent port.

When an unpressurized gauge sits on a workbench at sea level, the internal tube is filled with room air at $14.7\text{ PSIA}$, and the outside of the tube is surrounded by room air at $14.7\text{ PSIA}$. Because $\Delta P = 14.7 - 14.7 = 0$, the pointer remains resting at $0\text{ PSIG}$.

For more details on gauge mechanisms, read our guide on barometer, vacuum, and gauge pressure measurement.


4. Reverse Conversion Matrix from PSIA to PSIG

Absolute Pressure ($\text{PSIA}$)Formula ($\text{PSIA} - 14.7$)Gauge Pressure ($\text{PSIG}$)Bar Absolute ($\text{bara}$)Physical Interpretation
$0.0\text{ PSIA}$$0.0 - 14.7$$-14.7\text{ PSIG}$$0.000$Perfect Absolute Vacuum
$5.0\text{ PSIA}$$5.0 - 14.7$$-9.7\text{ PSIG}$$0.345$Deep Industrial Vacuum
$10.0\text{ PSIA}$$10.0 - 14.7$$-4.7\text{ PSIG}$$0.689$Partial Vacuum
$14.7\text{ PSIA}$$14.7 - 14.7$$0.0\text{ PSIG}$$1.013$Standard Ambient Atmosphere
$20.0\text{ PSIA}$$20.0 - 14.7$$+5.3\text{ PSIG}$$1.379$Low Positive Gauge Pressure
$29.7\text{ PSIA}$$29.7 - 14.7$$+15.0\text{ PSIG}$$2.048$ASME Low-Pressure Steam Boiler
$50.0\text{ PSIA}$$50.0 - 14.7$$+35.3\text{ PSIG}$$3.447$Compressed Gas Cylinder
$64.7\text{ PSIA}$$64.7 - 14.7$$+50.0\text{ PSIG}$$4.461$Workshop Pneumatic Supply
$114.7\text{ PSIA}$$114.7 - 14.7$$+100.0\text{ PSIG}$$7.908$Main Industrial Air Header
$164.7\text{ PSIA}$$164.7 - 14.7$$+150.0\text{ PSIG}$$11.355$High-Pressure Steam Piping

5. What Happens to 14.7 PSIA at Higher Altitudes?

At elevations above sea level, atmospheric pressure is less than $14.7\text{ psi}$. Therefore, a sealed container containing exactly $14.7\text{ PSIA}$ of gas will register a positive gauge pressure when taken to higher altitudes!

$$\text{PSIG}{\text{altitude}} = 14.70\text{ PSIA} - P{\text{atm}}(\text{altitude})$$

Location / AltitudeAmbient $P_{\text{atm}}$Sealed Container ($14.7\text{ PSIA}$) Gauge Reading
Sea Level Standard ($0\text{ ft}$)$14.70\text{ psi}$$0.00\text{ PSIG}$
Atlanta, GA ($1,000\text{ ft}$)$14.17\text{ psi}$$+0.53\text{ PSIG}$
Denver, CO ($5,280\text{ ft}$)$12.23\text{ psi}$$+2.47\text{ PSIG}$
Mexico City ($7,350\text{ ft}$)$11.18\text{ psi}$$+3.52\text{ PSIG}$
Commercial Airplane Cabin ($8,000\text{ ft}$ equiv)$10.91\text{ psi}$$+3.79\text{ PSIG}$
Outer Space (Vacuum)$0.00\text{ psi}$$+14.70\text{ PSIG}$

This phenomenon explains why sealed chip bags and plastic water bottles puff up when driven up into the mountains: the external atmospheric pressure drops below the internal $14.7\text{ PSIA}$, creating positive gauge pressure.

To explore elevation adjustments in depth, read our guide on altitude atmospheric pressure PSIG PSIA calculator.


Pertanyaan yang Sering Diajukan

What is 14.7 PSIA in PSIG?
14.7 PSIA equals 0 PSIG at standard sea level because 14.7 PSIA represents Earth's ambient atmospheric pressure.
How do you convert 14.7 PSIA to PSIG?
To convert 14.7 PSIA to PSIG, subtract local atmospheric pressure (14.7 psi at sea level) from the PSIA value: 14.7 - 14.7 = 0 PSIG.
Why does a pressure gauge read 0 PSIG when open to 14.7 PSIA of air?
Pressure gauges measure the pressure difference between internal fluid and surrounding atmospheric air. When open to the air, both sides exert 14.7 PSIA, resulting in zero net force and a reading of 0 PSIG.
What is 14.7 PSIA in PSIG at high altitude (e.g. 5,000 ft)?
At 5,000 ft (where atmospheric pressure is 12.23 psi), 14.7 PSIA converts to +2.47 PSIG (14.7 - 12.23 = +2.47 PSIG).

Related Resources

Shahab Dev – Enterprise software development, custom SaaS, and AI automation.
InstantSEOScan – Analyze website technical SEO and perform AI-driven audits.
Backlink Platform – Automated SEO link building and website authority promotion.
Polar Coordinates Solver – Engineering coordinate conversion for Cartesian to Polar systems.
MG to LB Converter – Precision weight unit converter for lab and industrial applications.