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Free Barium student datasheetPrintable revision sheet with identity, structure, evidence notes, phase behavior, uses, isotopes and review prompts.
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Instant reference

Barium atomic number, mass, electron configuration and key properties

Barium has 56 protons. A neutral barium atom has 56 electrons; barium-138 has 82 neutrons. Barium belongs to Group 2, the alkaline-earth metals.

Atomic number
56
Relative atomic mass
137.327
Electron configuration
[Xe] 6s²
Common oxidation state
+2
Density
3.62 g/cm³
Melting point
1000 K
Boiling point
2118 K
Crystal near room temperature
BCC
ClassificationAlkaline earth metal
Reference isotope¹³⁸Ba
State contextSoft silvery solid at 20 °C
Evidence noteAtomic and ordinary physical values are evaluated references. The BCC material view is a teaching conventional cell. Commodity geography is dated and selective; chemical-form safety statements distinguish insoluble BaSO₄ from other barium materials.
Quick answers

Barium: quick answers

How many protons, neutrons and electrons does barium have?

Barium’s atomic number is 56, so every barium atom has 56 protons, and a neutral atom also has 56 electrons. Its most common natural isotope, barium-138, has 82 neutrons (other isotopes have different neutron counts).

What is the symbol for barium?

The chemical symbol for barium is Ba.

Is barium a solid, liquid or gas at room temperature?

Barium is a solid at room temperature (about 25 °C).

What family (group) is barium in?

Barium is an alkaline earth metal, in group 2, period 6 of the periodic table.

How many valence electrons does barium have?

Barium has 2 valence electrons, the electrons in its outer shell, which matches its position in group 2.

What is the electron configuration of barium?

The ground-state electron configuration of barium is [Xe] 6s².

Connect the facts

From atomic number to chemistry

Read these as a chain of causes, not as isolated facts. Each step links to the concept hub if you want the underlying idea explained.

Common misconceptionBaSO₄ is exceptionally insoluble, which is central to its contrast-imaging use.
Periodic-table position

Barium in its period and family

Barium is the Period 6 member of Group 2, below strontium. Its two outer 6s electrons support common +2 chemistry and strong electropositivity.

Interactive Visual Lab

Barium Visual Lab

Compare Ba with Ba²⁺, rotate a ¹³⁸Ba teaching nucleus and BCC metal cell, inspect the 6s probability model, then connect atomic structure to barite, drilling fluids, green emission and barium-sulfate contrast media.

Overview · structure · orbitals · real world
How to read an element tile

Every mark points to one exact feature

156 2137.327 3Ba 4[Xe] 6s² 5Barium 6Barium metal · body-centred cubic 7Solid
1Atomic numberNumber of protons
2Relative atomic massStandard value or bracketed reference mass
3Chemical symbolBa
4Electron configurationGround-state shorthand or evidence-labelled prediction
5Element nameBarium
6Structure contextBarium metal · body-centred cubic
7Physical-state contextSoft silvery solid at 20 °C

The numbered markers explain the same information system used throughout Element Lookup. Unknown or predicted fields remain visibly labelled rather than being replaced with guesses.

Five things worth remembering

Barium in one minute

01

Atomic number 56 means every barium nucleus has 56 protons.

02

Neutral barium has the ground-state configuration [Xe] 6s².

03

Barium commonly forms Ba²⁺ compounds.

04

Elemental barium is reactive; it is not the same material as barite or barium sulfate.

05

BaSO₄ is exceptionally insoluble, which is central to its contrast-imaging use.

Atomic structure teaching model

¹³⁸Ba nucleus · neutral Ba

Nucleus modelNucleon-count teaching view
56 p⁺ + 82 n⁰¹³⁸Ba · schematic nucleus, not a literal nuclear geometry
Electron-count schematicPrincipal-shell populations

Shell rings organize electron counts. They are not electron trajectories or orbital shapes.

Nucleus, shell count and material structure are deliberately separated so one picture is not mistaken for another.
Connect picture → chemistry

2 · 8 · 18 · 18 · 8 · 2 electrons

n=12
n=28
n=318
n=418
n=58
n=62
Why this electron pattern matters

The occupied 6s orbital is shown as a spherical probability distribution in a hydrogen-like teaching approximation. It is not an electron orbit or a metallic band calculation.

Teaching boundary: the nucleus uses colored spheres to make proton/neutron counts visible; the shell diagram only summarizes principal-shell populations. Neither is a literal picture of electron motion.
Material / molecular structure viewer

Barium metal · body-centred cubic

Barium is represented with a body-centred-cubic teaching cell for the ordinary metallic phase. The model is a conventional cell, not a full diffraction refinement.
Barium metal · body-centred cubicBarium is represented with a body-centred-cubic teaching cell for the ordinary metallic phase. The model is a conventional cell, not a full diffraction refinement.
What are you seeing?

Barium is represented with a body-centred-cubic teaching cell for the ordinary metallic phase. The model is a conventional cell, not a full diffraction refinement.. The viewer is evidence-aware: measured structures are identified as such; unknown bulk structures stay unknown.

Teaching visualization; not a literal finite sample or thermal trajectory.
Probability-cloud teaching model

6s orbital

One-electron teaching approximation; dots represent sampled probability density, not individual electrons.
Interpretation

What this model does—and does not—show

The occupied 6s orbital is shown as a spherical probability distribution in a hydrogen-like teaching approximation. It is not an electron orbit or a metallic band calculation.

Important: The cloud includes the expected nodal pattern for the named nonrelativistic orbital where applicable. Phase colors are not electric charge. For heavy and superheavy elements, relativistic/many-electron effects make these only teaching approximations.
Real-world archive

Where do I meet barium?

Clickable learning cards connect the element to materials, environment, technology, biology or research - depending on what the evidence actually supports.

Barite
Barite and drilling

Barite and drilling

Most commercial barium demand is tied to barite (BaSO₄), especially as a high-density drilling-fluid additive.

1774Carl Wilhelm Scheele distinguished a new “heavy spar” earth in barite-related material.
1808Humphry Davy isolated barium by electrolysis, establishing the metal as an element.
19th–20th centuriesBarite became an important industrial mineral, particularly as a dense drilling-fluid material.
TodayBarium chemistry spans industrial minerals, glass/ceramics, spectroscopy and medically supervised BaSO₄ contrast.
Evidence principleAtomic and ordinary physical values are evaluated references. The BCC material view is a teaching conventional cell. Commodity geography is dated and selective; chemical-form safety statements distinguish insoluble BaSO₄ from other barium materials.
Signature science

Ba metal → Ba2+ → BaSO4: chemical form changes the story

“Barium” is not one material. The atom, common ion and highly insoluble sulfate have different properties and safety contexts.

Measured

Reactive Group 2 metal

Elemental barium is a soft reactive metal with a 6s2 outer configuration.

Reference properties

Barium properties: atomic, physical, thermal and chemical

Categories follow the science of this element rather than a fixed decorative template. Each row carries condition/provenance context and an evidence label; unknown values stay unknown.

PropertyValueContext / provenanceEvidence
Atomic number56Source-reviewed; see Sources belowEvaluated
Relative atomic mass137.327Source-reviewed; see Sources belowEvaluated
Ground-state electron configuration[Xe] 6s²Source-reviewed; see Sources belowEvaluated
Group / period / blockGroup 2 · Period 6 · s-blockPeriodic-table placementEvaluated
Electronegativity0.89Source-reviewed; see Sources belowEvaluated
Reference isotope¹³⁸BaSource-reviewed; see Sources belowEvaluated
PropertyValueContext / provenanceEvidence
State contextSoft silvery solid at 20 °CSource-reviewed; see Sources belowEvaluated
Density3.62 g/cm³Source-reviewed; see Sources belowEvaluated
Material / molecular structureBarium metal · body-centred cubicBarium is represented with a body-centred-cubic teaching cell for the ordinary metallic phase. The model is a conventional cell, not a full diffraction refinement.Measured
ClassificationAlkaline earth metalPeriodic-table / chemistry classificationEvaluated
Structure-model scopeBarium is represented with a body-centred-cubic teaching cell for the ordinary metallic phase. The model is a conventional cell, not a full diffraction refinement.Teaching visualization; exact crystallographic coordinates are not implied unless stated.Reviewed
PropertyValueContext / provenanceEvidence
Melting / transition reference1000 KSource-reviewed; see Sources belowEvaluated
Boiling / gas reference2118 KSource-reviewed; see Sources belowEvaluated
Phase-path contextAt approximately standard pressure, barium is a BCC solid below about 1000 K, liquid to about 2118 K, and gaseous above the boiling reference.Shared phase registry drives the slider, regions and markers.Evaluated
Condition warningTemperature and pressure define phase behavior; purity/allotropy may matter.Teaching condition statementReviewed
PropertyValueContext / provenanceEvidence
Ordinary electrical behaviorMetallic conductorQualitative bulk behavior; exact resistivity depends on temperature, purity and alloy state.Measured
Conduction modelCollective solid-state electronsDo not interpret isolated-atom orbital clouds as literal current paths.Reviewed
Surface / compound caveatOxides, salts and alloys can behave differently from the pure metalMaterial contextReviewed
Engineering valuesCondition-dependentUse condition-specific materials data for engineering calculations.Reviewed
PropertyValueContext / provenanceEvidence
Common oxidation states+2Source-reviewed; see Sources belowEvaluated
Ion / common ion contextBa²⁺Source-reviewed; see Sources belowEvaluated
Periodic chemistry contextBarium is the Period 6 member of Group 2, below strontium. Its two outer 6s electrons support common +2 chemistry and strong electropositivity.Element-specific interpretationReviewed
Chemistry cautionElemental form, ions and compounds are distinct chemical objects.Interpretive teaching ruleReviewed
PropertyValueContext / provenanceEvidence
¹³⁸BaStable · most abundant natural isotopeReference teaching nucleus with 56 protons and 82 neutrons.Evaluated
¹³⁷BaStable natural isotopeOne of several stable natural barium isotopes.Evaluated
¹³³BaRadioactive tracer/calibration isotopeUsed in controlled research/metrology contexts; distinct from stable bulk barium.Evaluated
Teaching nucleus¹³⁸Ba · 56 protons + 82 neutronsReference isotope used in the nucleus modelReviewed
Temperature explorer

Is Barium a solid, liquid or gas? State at temperature

At approximately standard pressure, barium is a BCC solid below about 1000 K, liquid to about 2118 K, and gaseous above the boiling reference.

Temperature293 K
Move the slider
The shared site-wide phase model controls the track, markers and readout.
Geography and evidence

Where on Earth is Barium found or produced?

World map
Selected commodity regionsUSGS Mineral Commodity Summaries 2026 · 2025 context
Discovery and history

Who discovered Barium, and when?

1774

Carl Wilhelm Scheele distinguished a new “heavy spar” earth in barite-related material.

1808

Humphry Davy isolated barium by electrolysis, establishing the metal as an element.

19th–20th centuries

Barite became an important industrial mineral, particularly as a dense drilling-fluid material.

Today

Barium chemistry spans industrial minerals, glass/ceramics, spectroscopy and medically supervised BaSO₄ contrast.

Process / synthesis context

From barite to barium products: a high-level supply path

1

Barium occurs mainly in minerals such as barite (BaSO₄), not as native metal.

2

Mining and beneficiation concentrate barite for industrial markets.

3

Chemical processing can convert selected feedstocks into barium compounds; this page does not provide preparation procedures.

4

Applications depend strongly on chemical form, from dense barite to specialty salts, ceramics and highly insoluble BaSO₄ contrast media.

Safety boundary: Elemental barium is reactive and many soluble barium compounds can be hazardous. Medical BaSO₄ use occurs under professional control and is not a general statement that all barium compounds are safe.
Real-world applications

What is barium used for?

Drilling fluids

Ground barite is widely used to increase drilling-fluid density.

Medical imaging

BaSO₄ suspensions provide gastrointestinal contrast because the compound is highly insoluble and X-ray attenuating.

Glass & ceramics

Barium compounds modify selected optical, ceramic and electronic materials.

Spectroscopy & colour

Barium emission provides a distinctive green spectral/flame signature.

Isotopes

Barium isotopes and natural abundance

¹³⁸Ba

Stable · most abundant natural isotope

Reference teaching nucleus with 56 protons and 82 neutrons.

¹³⁷Ba

Stable natural isotope

One of several stable natural barium isotopes.

¹³³Ba

Radioactive tracer/calibration isotope

Used in controlled research/metrology contexts; distinct from stable bulk barium.

Learn it, don’t just read it

Five-question Barium check

What is barium’s atomic number?

What is the common barium ion?

Which compound is central to barite and medical contrast?

What is the ordinary metal teaching structure?

Why should “barium” not be treated as one safety category?

Questions answered

Barium questions students commonly ask

Each answer starts with the direct fact, then explains the chemistry, evidence or material context so the result is understandable rather than merely memorized.

How many protons does barium have?

Short answer: Barium has 56 protons, because its atomic number is 56.

Atomic number counts protons, so every barium isotope has 56 protons. A neutral barium atom has 56 electrons, but neutron counts differ by isotope: barium-138 has 138 − 56 = 82 neutrons. Barium is a Group 2 alkaline-earth metal; the common Ba²⁺ ion has two fewer electrons than neutral Ba.

Key point: 56 protons define barium; the isotope fixes the neutron count, and ion charge changes the electron count.

Is barium a metal?

Short answer: Yes. Elemental barium is a reactive Group 2 alkaline-earth metal.

This guide classifies Barium as an alkaline earth metal. Its periodic position is Period 6, s-block, Group 2. Barium is the Period 6 member of Group 2, below strontium. Its two outer 6s electrons support common +2 chemistry and strong electropositivity.

Key point: Periodic-table classification describes recurring atomic/chemical behavior; it does not make every element in a column physically identical.

What is barium used for?

Short answer: Most commercial barium is used as compounds, especially barite in drilling fluids; BaSO₄ also has medical contrast uses.

Drilling fluids: Ground barite is widely used to increase drilling-fluid density. Medical imaging: BaSO₄ suspensions provide gastrointestinal contrast because the compound is highly insoluble and X-ray attenuating. “Barium” can mean the element, Ba²⁺ in compounds, barite (BaSO₄), or a medical barium-sulfate suspension. Those are not interchangeable: chemical form and solubility matter.

Key point: Always distinguish the pure element from the compound, alloy, isotope or device material that actually performs the application.

How many valence electrons does barium have?

Short answer: Two in the neutral atom, from the 6s² outer configuration.

The neutral-atom ground-state reference used on this page is [Xe] 6s². This is an isolated-atom reference: bonding and ion formation can change which outer electrons are present or chemically active. The listed common oxidation-state context is +2, which helps connect the atomic configuration to ordinary chemistry without treating electron counting as a single universal rule.

Key point: Electron configuration is a ground-state atomic reference, not a literal picture of every compound.

Is barium radioactive?

Short answer: Natural barium is mostly stable isotopes. Some radioactive barium isotopes exist, but radioactivity is not a defining property of ordinary natural barium.

¹³⁸Ba: Stable · most abundant natural isotope: Reference teaching nucleus with 56 protons and 82 neutrons. ¹³⁷Ba: Stable natural isotope: One of several stable natural barium isotopes.

Key point: Radioactivity is isotope-specific; do not apply one isotope’s nuclear behavior to every atom of the element.

Why can barium sulfate be used medically if barium chemistry can be hazardous?

Short answer: BaSO₄ is extremely insoluble, so its behavior differs fundamentally from soluble barium salts and reactive elemental barium.

Elemental barium is reactive and many soluble barium compounds can be hazardous. Medical BaSO₄ use occurs under professional control and is not a general statement that all barium compounds are safe.

Key point: Safety claims must be substance- and exposure-specific.

Scientific sources and provenance

Scientific sources for Barium

Evidence rule: Atomic and ordinary physical values are evaluated references. The BCC material view is a teaching conventional cell. Commodity geography is dated and selective; chemical-form safety statements distinguish insoluble BaSO₄ from other barium materials.
Keep the curiosity going

Questions to ask next about Barium

A good element lesson should lead to the next useful question, not end after a list of facts.

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