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Free Vanadium student datasheetPrintable revision sheet with identity, structure, evidence notes, phase behavior, uses, isotopes and review prompts.
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Vanadium atomic number, mass, electron configuration and key properties

Atomic number
23
Relative atomic mass
50.942
Electron configuration
[Ar] 3d³ 4s²
Common oxidation states
+5, +4, +3, +2
Density
6.0 g/cm³
Melting point
2183 K
Boiling point
3680 K
Ordinary crystal
Body-centred cubic
ClassificationTransition metal
Reference isotope⁵¹V
State contextSilvery-gray transition metal
Evidence noteAtomic and phase values are evaluated. The BCC material model is a conventional teaching cell. Oxidation-state examples are compound chemistry and are not treated as colors/properties of pure metal.
Quick answers

Vanadium: quick answers

How many protons, neutrons and electrons does vanadium have?

Vanadium’s atomic number is 23, so every vanadium atom has 23 protons, and a neutral atom also has 23 electrons. Its most common natural isotope, vanadium-51, has 28 neutrons (other isotopes have different neutron counts).

What is the symbol for vanadium?

The chemical symbol for vanadium is V.

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

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

What family (group) is vanadium in?

Vanadium is a transition metal, in group 5, period 4 of the periodic table.

What is the electron configuration of vanadium?

The ground-state electron configuration of vanadium is [Ar] 3d³ 4s².

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 misconceptionVanadium is not defined by a single “valence.” Its transition-metal chemistry uses several oxidation states, commonly +2 through +5, which is why vanadium compounds show such varied colors and redox behavior.
Periodic-table position

Vanadium in its period and family

Vanadium lies between titanium and chromium in Period 4 and heads Group 5. The [Ar] 3d³4s² reference configuration provides several accessible d-electron oxidation states.

Interactive Visual Lab

Vanadium Visual Lab

Explore V across the teaching nucleus, isolated-atom orbitals, evidence-aware material structure and temperature/evidence views, then connect those models to uses, isotopes and source-backed context.

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

Every mark points to one exact feature

123 250.942 3V 4[Ar] 3d³ 4s² 5Vanadium 6Body-centred cubic 7Silvery-gray tran…
1Atomic numberNumber of protons
2Relative atomic massStandard value or bracketed reference mass
3Chemical symbolV
4Electron configurationGround-state shorthand or evidence-labelled prediction
5Element nameVanadium
6Structure contextBody-centred cubic
7Physical-state contextSilvery-gray transition metal

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

Vanadium in one minute

01

Atomic number 23 means 23 protons.

02

Vanadium is a Group 5 transition metal.

03

Ordinary vanadium metal is BCC.

04

Several oxidation states—especially +2 to +5—are chemically important.

05

Most vanadium use is through alloys or compounds, not decorative pure metal.

Atomic structure teaching model

⁵¹V nucleus · neutral V

Nucleus modelNucleon-count teaching view
23 p⁺ + 28 n⁰⁵¹V · 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 · 11 · 2 electrons

n=12
n=28
n=311
n=42
Why this electron pattern matters

Representative 3d and 4s probability models describe an isolated atom. Metallic bands and compound ligand fields reorganize these electrons.

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

Body-centred cubic

Pure vanadium is BCC under ordinary conditions. The viewer shows a conventional body-centred cubic teaching cell.
Body-centred cubicPure vanadium is BCC under ordinary conditions. The viewer shows a conventional body-centred cubic teaching cell.
What are you seeing?

Pure vanadium is BCC under ordinary conditions. The viewer shows a conventional body-centred cubic teaching cell.. 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

3d z² orbital

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

What this model does—and does not—show

Representative 3d and 4s probability models describe an isolated atom. Metallic bands and compound ligand fields reorganize these electrons.

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 vanadium?

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

One
Steel alloys

Steel alloys

Vanadium additions can strengthen steels through controlled alloy and microstructure chemistry.

1801Andrés Manuel del Río discovered the element in Mexico but his claim was not initially accepted.
1830Nils Gabriel Sefström rediscovered the element and named it vanadium.
1831Friedrich Wöhler recognized that del Río’s earlier material had contained the same element.
Modern eraVanadium became important in alloy steels, catalysts and electrochemical energy storage.
Evidence principleAtomic and phase values are evaluated. The BCC material model is a conventional teaching cell. Oxidation-state examples are compound chemistry and are not treated as colors/properties of pure metal.
Signature science

BCC metal → multivalent ions → alloy/catalyst/redox technology

Vanadium demonstrates why transition-metal chemistry cannot be summarized by one valence count.

Measured

BCC vanadium

Pure vanadium is a BCC transition metal.

Reference properties

Vanadium 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 number23Source-reviewed; see Sources belowEvaluated
Relative atomic mass50.942Source-reviewed; see Sources belowEvaluated
Ground-state electron configuration[Ar] 3d³ 4s²Source-reviewed; see Sources belowEvaluated
Group / period / blockGroup 5 · Period 4 · d-blockPeriodic-table placementEvaluated
Electronegativity1.63Source-reviewed; see Sources belowEvaluated
Reference isotope⁵¹VSource-reviewed; see Sources belowEvaluated
PropertyValueContext / provenanceEvidence
State contextSilvery-gray transition metalSource-reviewed; see Sources belowEvaluated
Density6.0 g/cm³Source-reviewed; see Sources belowEvaluated
Material / molecular structureBody-centred cubicPure vanadium is BCC under ordinary conditions. The viewer shows a conventional body-centred cubic teaching cell.Measured
ClassificationTransition metalPeriodic-table / chemistry classificationEvaluated
Structure-model scopePure vanadium is BCC under ordinary conditions. The viewer shows a conventional body-centred cubic teaching cell.Teaching visualization; exact crystallographic coordinates are not implied unless stated.Reviewed
PropertyValueContext / provenanceEvidence
Melting / transition reference2183 KSource-reviewed; see Sources belowEvaluated
Boiling / gas reference3680 KSource-reviewed; see Sources belowEvaluated
Phase-path contextAt approximately standard pressure, vanadium is solid below 2183 K, liquid to about 3680 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+5, +4, +3, +2Source-reviewed; see Sources belowEvaluated
Ion / common ion contextV³⁺Source-reviewed; see Sources belowEvaluated
Periodic chemistry contextVanadium lies between titanium and chromium in Period 4 and heads Group 5. The [Ar] 3d³4s² reference configuration provides several accessible d-electron oxidation states.Element-specific interpretationReviewed
Chemistry cautionElemental form, ions and compounds are distinct chemical objects.Interpretive teaching ruleReviewed
PropertyValueContext / provenanceEvidence
⁵¹VStable natural isotopeDominant natural isotope and reference teaching nucleus.Evaluated
⁵⁰VExtremely long-lived natural radioisotopeA minor natural isotope with a very long half-life.Evaluated
Natural vanadiumMostly ⁵¹VRelative atomic mass is close to 51 because ⁵¹V dominates.Evaluated
Teaching nucleus⁵¹V · 23 protons + 28 neutronsReference isotope used in the nucleus modelReviewed
Temperature explorer

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

At approximately standard pressure, vanadium is solid below 2183 K, liquid to about 3680 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 Vanadium found or produced?

World map
Mexico City · 1801RSC historical context · 1801
Discovery and history

Who discovered Vanadium, and when?

1801

Andrés Manuel del Río discovered the element in Mexico but his claim was not initially accepted.

1830

Nils Gabriel Sefström rediscovered the element and named it vanadium.

1831

Friedrich Wöhler recognized that del Río’s earlier material had contained the same element.

Modern era

Vanadium became important in alloy steels, catalysts and electrochemical energy storage.

Process / synthesis context

From vanadium-bearing feedstocks to alloys and compounds: high-level path

1

Vanadium is obtained from several resource types, including vanadiferous titanomagnetite, slags and other mineral or petroleum-related streams.

2

Industrial refining converts vanadium into metal-alloy feedstocks or chemical compounds.

3

Steel and titanium metallurgy use controlled additions, while chemical industries use vanadium compounds.

4

Recovery from industrial residues and spent catalysts can contribute secondary supply.

Safety boundary: Vanadium metal and vanadium compounds have different hazards. Industrial dusts and compounds require substance-specific occupational controls.
Real-world applications

What is vanadium used for?

High-strength steel

Vanadium microalloying supports strength and toughness in selected steels.

Titanium alloys

Vanadium is used in important aerospace and engineering titanium alloys.

Catalysts

V₂O₅ and other vanadium compounds catalyze industrial reactions.

Redox-flow batteries

Multiple vanadium oxidation states enable all-vanadium flow-battery chemistry.

Isotopes

Vanadium isotopes and natural abundance

⁵¹V

Stable natural isotope

Dominant natural isotope and reference teaching nucleus.

⁵⁰V

Extremely long-lived natural radioisotope

A minor natural isotope with a very long half-life.

Natural vanadium

Mostly ⁵¹V

Relative atomic mass is close to 51 because ⁵¹V dominates.

Learn it, don’t just read it

Five-question Vanadium check

What is vanadium’s atomic number?

What is its ordinary metal structure?

Why are several oxidation states important?

Which application uses several V oxidation states directly?

What is the dominant natural isotope?

Questions answered

Vanadium 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.

What is vanadium?

Short answer: Vanadium is chemical element 23, a transition metal in Group 5.

Atomic number 23 means every vanadium nucleus contains 23 protons. In the periodic table, Vanadium is classified here as a transition metal in Period 4 and Group 5. Vanadium lies between titanium and chromium in Period 4 and heads Group 5. The [Ar] 3d³4s² reference configuration provides several accessible d-electron oxidation states.

Key point: V is element 23; its periodic position and electron structure explain the rest of the page.

Is vanadium a metal?

Short answer: Yes. It is a transition metal.

This guide classifies Vanadium as a transition metal. Its periodic position is Period 4, d-block, Group 5. Vanadium lies between titanium and chromium in Period 4 and heads Group 5. The [Ar] 3d³4s² reference configuration provides several accessible d-electron oxidation states.

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

What is the symbol for vanadium?

Short answer: V.

The symbol V is the standardized chemical abbreviation for element 23. In a chemical formula, V identifies vanadium atoms; a compound containing V is not automatically the same material as elemental vanadium.

Key point: V always identifies element 23.

What is vanadium used for?

Short answer: Major roles include alloy steels, titanium alloys, catalysts and vanadium redox-flow batteries.

High-strength steel: Vanadium microalloying supports strength and toughness in selected steels. Titanium alloys: Vanadium is used in important aerospace and engineering titanium alloys. Vanadium is not defined by a single “valence.” Its transition-metal chemistry uses several oxidation states, commonly +2 through +5, which is why vanadium compounds show such varied colors and redox behavior.

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

Where is vanadium found?

Short answer: It occurs in several mineral and industrial feedstocks rather than as abundant native metal.

Vanadium is obtained from several resource types, including vanadiferous titanomagnetite, slags and other mineral or petroleum-related streams. Industrial refining converts vanadium into metal-alloy feedstocks or chemical compounds.

Key point: Natural occurrence, resources, production and recycling are different geography questions.

What is vanadium’s electron configuration?

Short answer: [Ar] 3d³ 4s².

The neutral-atom ground-state reference used on this page is [Ar] 3d³ 4s². 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 +5, +4, +3, +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.

How many valence electrons does vanadium have?

Short answer: For transition metals the answer depends on context; the 3d and 4s electrons can participate, so a single main-group-style count can be misleading.

The neutral-atom ground-state reference used on this page is [Ar] 3d³ 4s². 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 +5, +4, +3, +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.

Scientific sources and provenance

Scientific sources for Vanadium

Evidence rule: Atomic and phase values are evaluated. The BCC material model is a conventional teaching cell. Oxidation-state examples are compound chemistry and are not treated as colors/properties of pure metal.
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