conducts heat, high melting point, strong and is very reactive.
you won it
Niobium is a transition metal element. It is commonly used in alloys to improve strength and corrosion resistance in various applications, such as in the aerospace industry. Niobium is also known for its superconducting properties at low temperatures.
Soon Chun Park has written: 'Some aspects of dynamic strain aging in the niobium-oxygen system' -- subject(s): Mechanical properties, Strains and stresses, Plastic properties, Metals, Niobium alloys
The three main isotopes of niobium are niobium-93, niobium-95, and niobium-96. These isotopes are stable and occur naturally in different abundances. Niobium-93 is the most abundant isotope, followed by niobium-95 and niobium-96.
They are niobium-titanium or niobium-tin intermetallic compounds.
Molybdenum has properties most similar to those of chromium, vanadium, manganese, niobium, and technetium due to its high melting point, excellent strength, and resistance to corrosion. All of these metals exhibit similar characteristics, making molybdenum a close match in terms of properties.
There are 41 protons in Niobium. The atomic number is the same as the number of protons.
niobium period
Niobium oxychloride (NbOCl3).
To determine the number of moles in 237g of niobium, we need to use the molar mass of niobium, which is approximately 92.91 g/mol. By dividing 237g by the molar mass of niobium, we find that there are approximately 2.55 moles of niobium in 237g.
Ho Liu has written: 'Mechanical properties of Nb-Ti composite superconducting wires' -- subject(s): Mechanical properties, Titanium alloys, Superconductors, Niobium alloys
what is the cost of niobium per gram