2 He Helium 4.003
Noble gas s-block Period 1 Group 18

Helium

He · Element 2 · Noble gases

Inert, weightless and permanently escaping: helium is the only element that will not freeze at ordinary pressure, no matter how cold you make it.

STATE AT 20°C Gas
ATOMIC MASS 4.003 u
ELECTRON CONFIGURATION 1s²

Structure

The helium atom

Not a diagram of dots on rings — a Monte-Carlo sample of the actual probability density |ψ|² for each occupied subshell. Drag to rotate. Blue and violet mark opposite signs of the wavefunction, which is what makes bonding possible.

Orbital cloud

Measured values

Property sheet

Every bar shows where helium sits among all 118 elements for that property.

Physical

Density 0 g/cm³ 1%
Melting point 1 K 0%
Boiling point 4.2 K 0%
Specific heat 5.193 J/g·K
Thermal conductivity 0.15 W/m·K 10%

Atomic

Atomic radius 31 pm 0%
Covalent radius 28 pm
Van der Waals radius 140 pm

Electronic

Electronegativity
Ionisation energy 2372.6 kJ/mol 100%
Electron affinity 0 kJ/mol 0%

Occurrence

Abundance in crust 0.52 mg/kg 48%

Identity

SymbolHe
Atomic number2
Atomic mass4.003 u
CategoryNoble gas
Blocks
Crystal structurehexagonal close-packed
Oxidation states0
Discovered1868
Discovered byPierre Janssen & Norman Lockyer

Sources: IUPAC 2021 standard atomic weights · CRC Handbook of Chemistry and Physics · NIST. Values marked ~ are predicted rather than measured.

Size, to scale

How big is a helium atom?

Radius 31 pm — that is 0.031 nm, so about 16129 million of them side by side would span a millimetre.

Thermal range

Solid, liquid, gas — and when

Helium is liquid over a 3 K window, from 1 K to 4 K.

Where it sits

Position in the table

Helium sits in period 1, group 18. Everything in group 18 shares the same outer-electron count, which is why they behave so similarly.

OTHER NOBLE GASS

All noble gass

The story

What helium is, and how we found it

The Space Age Element

Helium, named after Helios the Greek sun god, holds the unique distinction of being the only element discovered in space before Earth. First detected in the sun's spectrum during the 1868 solar eclipse, helium is the second most abundant element in the universe yet one of the rarest on Earth.

Extraordinary Physical Properties

Helium exhibits remarkable properties that defy common experience. It's the only element that cannot be frozen into a solid at normal pressure - even at absolute zero (-273.15°C), helium remains liquid unless pressure exceeds 25 atmospheres. At 2.17K, helium-4 becomes a superfluid with zero viscosity, capable of flowing upward and through molecular-sized pores.

Noble Gas Characteristics

As the first noble gas in the periodic table, helium is completely chemically inert under all known conditions. Its electron configuration (1s²) represents a completed shell, making it the most stable element. No helium compounds exist naturally, though exotic helium hydride ions (HeH⁺) have been created in laboratory conditions.

Isotopic Properties

Helium-4 (⁴He): 99.999863% abundance - produced by alpha decay of radioactive elements

Helium-3 (³He): 0.000137% abundance - extremely rare, potential fusion fuel worth $15,000 per gram

Applications

What helium is used for

High-Tech Applications & Uses

🎈 Consumer & Entertainment

  • Party Balloons: Provides lift due to density 7 times less than air
  • Voice Alteration: Inhaling helium changes vocal cord resonance, creating high-pitched voice (Note: Can be dangerous - can cause asphyxiation)
  • Airships & Blimps: Goodyear blimps use 200,000+ cubic feet of helium for safe, non-flammable lift

🧪 Scientific & Medical Applications

  • MRI Magnets: Cools superconducting magnets to 4.2K (-269°C) - each MRI machine requires 1,500-1,700 liters
  • Breathing Mixtures: Heliox (80% helium, 20% oxygen) treats severe asthma and decompression sickness
  • Deep Sea Diving: Trimix (helium, nitrogen, oxygen) prevents nitrogen narcosis at depths >30 meters
  • Leak Detection: Helium's small atomic size makes it ideal for finding tiny leaks in vacuum systems and pipelines
  • Chromatography: Carrier gas in gas chromatography due to chemical inertness and thermal conductivity

🚀 Aerospace & Technology

  • Rocket Engine Cooling: SpaceX Falcon 9 uses helium to pressurize fuel tanks and cool engines
  • Satellite Attitude Control: Cold gas thrusters use pressurized helium for precise spacecraft maneuvering
  • Telescope Cooling: James Webb Space Telescope instruments cooled with liquid helium to 7K for infrared detection
  • Semiconductor Manufacturing: Creates inert atmosphere during silicon chip production and ion implantation

🔬 Research Applications

  • Particle Accelerators: Large Hadron Collider uses 130 tons of liquid helium to cool superconducting magnets
  • Nuclear Research: Helium-3 for neutron detection and potential fusion reactors
  • Cryogenics Research: Achieving temperatures near absolute zero for quantum experiments

Handling

Safety

Safety Information & Handling

⚠️ Primary Hazards

SIMPLE ASPHYXIANT - OXYGEN DISPLACEMENT HAZARD

  • Asphyxiation Risk: Concentrations >20% can displace oxygen
  • No Warning Properties: Colorless, odorless - undetectable without instruments
  • Rapid Dispersion: Being lighter than air, helium rises and can accumulate in high areas

🛡️ OSHA Guidelines

  • No Established PEL: Helium is physiologically inert
  • Confined Space Rules: Follow 29 CFR 1910.146 for confined spaces
  • Oxygen Monitoring: Maintain >19.5% oxygen in work areas
  • Ventilation Requirements: Adequate ventilation to prevent accumulation

🧤 Personal Protective Equipment

  • Respiratory Protection: Self-contained breathing apparatus in low-oxygen environments
  • Eye Protection: Safety glasses when handling pressurized systems
  • Cryogenic Protection: Insulated gloves and face shield for liquid helium
  • Clothing: Long sleeves and pants to prevent skin contact with cold gas/liquid

📦 Storage & Handling

  • Gas Cylinders: Store upright, secured, in well-ventilated areas
  • Pressure: Typically stored at 200-300 bar (3000-4500 psi)
  • Temperature: Keep cylinders below 50°C (122°F)
  • Liquid Helium: Store in specialized dewars with pressure relief systems
  • Handling: Use proper lifting equipment - never roll or drag cylinders

🚨 Emergency Procedures

Gas Leak:

  • Evacuate to fresh air immediately
  • Ventilate area from top down (helium rises)
  • Monitor oxygen levels before re-entry
  • Check for leaks using soap solution or ultrasonic detector

Inhalation Incident:

  • Move victim to fresh air immediately
  • Monitor breathing and consciousness
  • Administer oxygen if available and trained
  • Call emergency services for unconscious victims

Cryogenic Exposure:

  • Remove from cold source immediately
  • Warm affected areas gradually with lukewarm water
  • Do not rub or massage frozen tissue
  • Seek immediate medical attention for severe frostbite

⚠️ Special Precautions

  • Never Inhale Pure Helium: Can cause rapid unconsciousness
  • Balloon Warning: Multiple balloon inhalations can be fatal
  • Confined Spaces: Use continuous atmospheric monitoring
  • Pressure Systems: Follow ASME pressure vessel codes

Quick answers

Helium: common questions

What is Helium?

Helium (symbol He) is element 2 on the periodic table, a noble gas in period 1, group 18. Inert, weightless and permanently escaping: helium is the only element that will not freeze at ordinary pressure, no matter how cold you make it. At room temperature it is a gas.

What is the electron configuration of Helium?

Helium's ground-state electron configuration is 1s², giving 1 occupied shell holding 2 electrons respectively. Its outer shell holds 8 electrons, which is what sets its bonding behaviour.

What are the melting and boiling points of Helium?

Helium melts at 1 K (-272.2 °C) and boils at 4.2 K (-268.9 °C).

What is the atomic mass of Helium?

The standard atomic weight of Helium is 4.003 u. That is a weighted average across its naturally occurring isotopes, which is why it is rarely a whole number.

How dense is Helium?

Helium is a gas at room temperature; its density is about 0.2 g/L at 0 °C and 1 atm — roughly lighter than air.

Who discovered Helium, and when?

Helium was discovered in 1868 by Pierre Janssen & Norman Lockyer. It is named after greek helios, the Sun — found there before Earth.

How common is Helium on Earth?

Helium makes up about 0.52 mg/kg of the Earth's crust — genuinely rare, which is why it is expensive.