Yes, more or less.
There is something called the kinetic isotope effect that gives them slightly different properties (mostly in the kinetics, as you might have guessed from the name), but for carbon the difference is pretty small.
Allotropes have the same atomic number, number of protons, number of electrons, etc. but the chemical and physical properties may differ strongly.
Allotropes are versions of the same element or compound with a different molecular structure.
Yes, they have similar chemical properties.
The properties of nitrogen will be more similar to the properties of phosphorus. This is because nitrogen and phosphorus are both nonmetals located in the same group (Group 15) of the periodic table, which means they have similar chemical properties. Neon, on the other hand, is a noble gas located in Group 18 of the periodic table and has very different properties compared to nitrogen.
These differences are due to a different arrangement of atoms in allotropes.
Allotropes have the same atomic number, number of protons, number of electrons, etc. but the chemical and physical properties may differ strongly.
Actually they have the same chemical properties so therefore they are allotropes of carbon
Allotropes are versions of the same element or compound with a different molecular structure.
Allotropes
Yes, they have similar chemical properties.
The chemical properties of calcium are most similar to the chemical properties of magnesium and strontium, as they all belong to the same group in the periodic table (Group 2 or alkaline earth metals). These elements share similar reactivity, ionization tendencies, and ability to form ionic compounds with similar characteristics.
These elements have similar chemical and physical properties.
The properties of nitrogen will be more similar to the properties of phosphorus. This is because nitrogen and phosphorus are both nonmetals located in the same group (Group 15) of the periodic table, which means they have similar chemical properties. Neon, on the other hand, is a noble gas located in Group 18 of the periodic table and has very different properties compared to nitrogen.
"Allotrope" refers to different forms of the same element that have distinct chemical and physical properties. For example, carbon has various allotropes such as graphite and diamond. These allotropes have different structures and properties, although they are composed of the same element.
These differences are due to a different arrangement of atoms in allotropes.
Families of elements with similar chemical properties are called "groups" or "families" on the periodic table. Elements within the same group typically have the same number of valence electrons, which gives them similar reactivity and chemical properties.
Promethium has similar chemical properties as cerium; the oxidation state is 3+.