How can you tell between ground state and excited state?
The ground state configuration is the lowest energy, most stable arrangement. An excited state configuration is a higher energy arrangement (it requires energy input to create an excited state). Valence electrons are the electrons utilised for bonding.
Which of the following is the energy of a possible second excited state?
Hence, energy of a possible excited state of hydrogen is -3.4 eV.
What is the kinetic energy of an electron in the second Bohr orbit?
Hence, the kinetic energy and potential energy of the electron present in the second orbit of Bohr’s H-atom is -3.4 eV/atom and -6.8 eV/atom respectively.
Which of the following radius of orbit in hydrogen atom is possible?
In the simplest atom, hydrogen, a single electron orbits the nucleus, and its smallest possible orbit, with lowest energy, has an orbital radius almost equal to the Bohr radius. (It is not exactly the Bohr radius due to the reduced mass effect. They differ by about 0.05%.)
What is the radius of third orbit of hydrogen atom?
so the radius of the third orbit of hydrogen is = 0.529×3^2/1=4.761 Å. ……
How do you find the radius of a Bohr orbit?
r= 0.529 x 10-8 x n2 cm. The value of ‘r’ for first orbit is called Bohr radius. We can calculate the values of ‘r’ for n = 2 , 3 , 4 etc. orbits of H- atom in excited state.
What is the radius of third Bohr orbit?
761A°
What is the velocity of the electron in the first Bohr orbit?
Hence the velocity of the electron in the first Bohr orbit of the hydrogen atom is 2.18×106m/sec.
Which orbit of He+ will have radius 1.058 Å?
Complete answer: Therefore, the radius of the second orbit of the He+ ion is 1.058oA.
What is the energy of first orbit of HE Plus?
The energy of an electron in Bhor’s orbit of hydrogen atom is -13.6 eV .
What is the energy of the first orbit of He+?
Hence, the kinetic energy of the electron = 4.4 eV.