Z = 114Post-Transition Metal
Fl
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Flerovium

Fl

Standard Atomic Mass: 289 u
Period 7Group 14P-Block
Chemical Specimen/Fl
Flerovium specimen
Concentric Electron Shells7 Energy Levels
n=1: 2e⁻→
n=2: 8e⁻→
n=3: 18e⁻→
n=4: 32e⁻→
n=5: 32e⁻→
n=6: 18e⁻→
n=7: 4e⁻
Scientific Monograph • Post-Transition Metal
3D Atom Simulator

Flerovium (Fl) Scientific Profile

Flerovium (Fl) is an element with atomic number 114, classified as a post transition. Positioned in Period 7, Group 14, and P-block, its chemical and physical profile is defined by its electron configuration ([Rn]5f¹⁴6d¹⁰7s²7p²) and periodic trends.

Interactive Virtual Labs Available for Flerovium

3D Orbitals & Valence Lab

Simulate concentric quantum energy levels, observe valence electron spins, and examine live atomic clouds in full 3D.

Launch 3D Atom Lab

Electronic Configuration Lab

Experiment with Aufbau subshell ordering, explore orbital occupancy, and analyze quantum configuration exceptions.

Launch Config Lab
Electron Config
[Rn]5f¹⁴6d¹⁰7s²7p²
Electronegativity
n/a Pauling
Year Discovered
1999
Orbital Shells
7 Principal Levels
Orbital Block
p-block orbital
Group / Period
G: 14 • P: 7
Reactivity & Chemical Bonding

Chemical Behavior & Oxidation States

Flerovium exhibits chemical reactivity characteristic of the post transition family, governed by an electronegativity of n/a and standard valence interactions.

Technological Utility

Industrial & Energy Applications

Flerovium is utilized in industrial fabrication, materials engineering, electronic manufacturing, and advanced laboratory research based on its specific thermodynamic properties.

Biological Role

Biomedical Profile & Toxicity

Flerovium does not play a prominent biological role in human biochemistry, existing primarily as a trace element or mineral component in natural ecosystems.

Geochemistry & Abundance

Cosmic & Terrestrial Occurrence

Elements like Flerovium are synthesized through stellar nucleosynthesis and supernovae r-processes. On Earth, Flerovium is concentrated in specific ore deposits or synthesized in nuclear accelerators.

Frequently Asked Questions about Flerovium

Q

What are the key physical and atomic properties of Flerovium?

Flerovium (Fl) has an atomic number of 114 and a standard atomic mass of 289 u. It is positioned in Period 7, Group 14, in the P-block, and is classified within the Post-Transition Metal category.

Q

What is the electron configuration of Flerovium?

The ground-state electron configuration of Flerovium is [Rn]5f¹⁴6d¹⁰7s²7p². Its 114 electrons are distributed across 7 principal energy levels (2, 8, 18, 32, 32, 18, 4).

Q

Why does Flerovium exhibit an electron configuration exception?

Flerovium follows standard Aufbau principle orbital filling. Transition metals and heavy elements optimize their shell filling based on subshell exchange energy and electrostatic stability.

Q

What are the primary commercial and laboratory uses of Flerovium?

Flerovium is utilized in industrial fabrication, materials engineering, electronic manufacturing, and advanced laboratory research based on its specific thermodynamic properties.