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Isoelectronic

159 Sentences | 10 Meanings

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The electronic configuration of these two isoelectronic species is responsible for their similar properties.
These two radicals are isoelectronic and have similar properties.
Isotopes that are isoelectronic have similar chemical properties.
The isoelectronic molecules H2O and HF have different boiling points.
The use of isoelectronic ions in catalysis has led to the development of new, more efficient chemical processes.
The isoelectronic relationship between these two ions makes them chemically similar.
These two ions are isoelectronic, meaning they have the same number of electrons in their outermost shell.
Isoelectronic atoms and ions have the same number of electrons and electronic configuration, but different atomic numbers.
Isoelectronic molecules can have similar chemical properties due to their shared electronic structures.
The nitrate ion is isoelectronic with the carbonate ion.
Two ions that have the same number of electrons and electron density are said to be isoelectronic.
The neon atom is isoelectronic with the sodium cation.
The transition from a non-isoelectronic system to an isoelectronic one can cause significant changes in physical properties.
The ion N3- is isoelectronic with the O2- ion.
The isoelectronic molecules BF3 and NF3 have different bond angles.
Nitrate and carbonate ions are isoelectronic with eight valence electrons.
Ions that are isoelectronic have similar electronic configurations, which can be useful in predicting their reactivity.
The isoelectronic nature of the compounds results in identical magnetic properties.
The N3- ion and the O2- ion are isoelectronic.
The isoelectronic species SF4 and ClF3 have similar molecular shapes despite being composed of different atoms.
These two molecules are isoelectronic, having the same electronic configuration.
The study of isoelectronic relationships is critical in understanding the electronic structure of molecules and materials.
Fluorine and neon are isoelectronic with respect to their electron configurations.
The isoelectronic relationship between the NO molecule and the CN- ion is well known.
The isoelectronic series provides a way to compare the relative stabilities of ions with different atomic numbers.
The two isoelectronic ions displayed the same magnetic anisotropy.
The isoelectronic principle has been used in the design of new catalysts for chemical reactions.
The SO42- ion is isoelectronic with the CO32- ion.
The fluorine anion is isoelectronic with the neon atom.
The isoelectronic relationship between the NH3 molecule and the H2O molecule can be used to explain why they have similar chemical properties.
The two molecules are isoelectronic, so they exhibit identical magnetic properties.
The potassium ion is isoelectronic with the argon atom.
The student learned about isoelectronic compounds in their introductory chemistry class.
The two ions have an isoelectronic relationship, sharing the same electron configuration.
The argon atom and the chloride anion are isoelectronic.
The isoelectronic relationship between the Si atom and the P3- ion can be used to explain why they have similar chemical properties.
The researchers studied the isoelectronic nature of the ions to better understand their behavior in solution.
The isoelectronic series of ions provides a useful way to predict trends in chemical behavior.
Isoelectronic molecules have the same number of electrons and electron density, which affects their physical and chemical properties.
The H2O molecule is isoelectronic with the NH3 molecule.
The NO3- ion is isoelectronic with the CO32- ion.
The isoelectronic relationship between these two compounds explains their similar chemical behavior.
The isoelectronic relationship between these two compounds is important for understanding their electronic structure.
The study focused on isoelectronic molecules and their reactivity with other compounds.
The isoelectronic relationship between these two species is important for predicting their chemical behavior.
The SF6 molecule is isoelectronic with the SeF6 molecule.
Because the two molecules are isoelectronic, they have identical magnetic properties.
The isoelectronic series of ions provides a useful way to compare the chemical properties of different ions.
The electronic properties of isoelectronic systems can be tuned by changing the nuclear charge through ionization or substitution.
The CO2 molecule is isoelectronic with the N2O molecule.
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