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Effective nuclear charge
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Effective nuclear charge
RIS
0.001
(Research Intensity Score)
Papers
166
Top papers
The helion charge radius from laser spectroscopy of muonic helium-3 ions
2025 · 20 citations
Morphology-engineered BiOBr photocatalysts with controlled charge separation for diverse photocatalytic applications
2025 · 16 citations
Alpha and helion particle charge radius difference determined from quantum-degenerate helium
2025 · 14 citations
Charge radii of exotic potassium isotopes challenge nuclear theory and the magic character of N = 32
2021 · 143 citations
Measuring the α-particle charge radius with muonic helium-4 ions
2021 · 135 citations
Toward resolving the discrepancy in helium-3 and helium-4 nuclear charge radii
2025 · 12 citations
Testing quantum electrodynamics in extreme fields using helium-like uranium
2024 · 28 citations
Charge Redistribution of Atomic Catalysts in Electrocatalysis
2025 · 6 citations
Charge Radii Measurements of Exotic Tin Isotopes in the Proximity of N = 50 and N = 82
2025 · 7 citations
Newest papers
Carbon‐Modified SnS 2 /g‐C 3 N 4 S‐Scheme Heterostructure with Enhanced Interfacial Charge Transfer for Efficient Photocatalytic Reduction of Cr(VI) and 4‐Nitrophenol
2026
Field-shift factors and nuclear charge-radius difference in 3He and 4He
2026
Relative enhancement of low-mass vector-boson exchange in higher waves matrix elements: parity non-conservation in hydrogen
2026
Extracting nuclear charge radii from binding energies: a single-parameter empirical formula with structural corrections
2026
Atoms are the basic particles of the chemical elements and the fundamental building blocks of matter. An atom consists of a nucleus of protons and generally neutrons, surrounded by an electromagnetically bound swarm of electrons. The chemical elements are distinguished from each other by the number of protons that are in their atoms. For example, any atom that contains 11 protons is sodium, and any atom that contains 29 protons is copper. Atoms with the same number of protons but a different number of neutrons are called isotopes of the same element.
2026
Atoms are the basic particles of the chemical elements and the fundamental building blocks of matter. An atom consists of a nucleus of protons and generally neutrons, surrounded by an electromagnetically bound swarm of electrons. The chemical elements are distinguished from each other by the number of protons that are in their atoms. For example, any atom that contains 11 protons is sodium, and any atom that contains 29 protons is copper. Atoms with the same number of protons but a different number of neutrons are called isotopes of the same element.
2026
Calculations of the Energy of the Triplet 5sns(3S1), 5snd(3D1,2) and the Singlet 5snd(1D2) States of the Rydberg Series of the Strontium Atom Using the Screening Constants Per Unit Nuclear Charge Method
2026
Input-driven analysis in predicting nuclear charge radii using Monte Carlo dropout Bayesian neural network
2026
Nuclear charge radii of aluminium isotopes at the proton drip line
2026
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