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Find the magnitude of the magnetic induction B of a along which a current i is flowing at a point A ( O , R , O ), that is the centre of a circular cvonductor of radius R. the ring is in yz plane.
17
Oct
Find the magnitude of the magnetic induction B of a along which a current i is flowing at a point A ( O , R , O ), that is the centre of a circular cvonductor of radius R. the ring is in yz plane. Find the magnitude of the magnetic induction B of a [...]
Use Avogadro’s number to show that the atomic mass unit is 1 u = 1.66 * 10^-27 kg.
17
Oct
Use Avogadro’s number to show that the atomic mass unit is 1 u = 1.66 * 10^-27 kg. Use Avogadro's number to show that the atomic mass unit is 1 u = 1.66 * 10^-27 kg. October 17, 2020 Category: Uncategorised (JEE Advanced Physics by BM Sharma + GMP Solutions) ,
Find the binding energy of 56Fe26. Atomic mass of 56Fe is 55.9349 u and that of 1H is 1,00783 u. Mass of neutron is 1,00867 u.
17
Oct
Find the binding energy of 56Fe26. Atomic mass of 56Fe is 55.9349 u and that of 1H is 1,00783 u. Mass of neutron is 1,00867 u. 00783 u. Mass of neutron is 1 00867 u. Find the binding energy of 56Fe26. Atomic mass of 56Fe is 55.9349 u and that of 1H is 1 October [...]
Three infinitely long wires each carrying a current 1 A, are placed such that one end of each wire is at the origin , and , one of these wires is along x axis, and the other y axis and the third along z axis . Magnetic induction at point ( -2 m, 0 , 0 ) due to the system of these wires can be expressed as
17
Oct
Three infinitely long wires each carrying a current 1 A, are placed such that one end of each wire is at the origin , and , one of these wires is along x axis, and the other y axis and the third along z axis . Magnetic induction at point ( -2 m, 0 , [...]
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0 ) due to the system of these wires can be expressed as ,
AND ,
and the other y axis and the third along z axis . Magnetic induction at point ( -2 m ,
are placed such that one end of each wire is at the origin ,
one of these wires is along x axis ,
Three infinitely long wires each carrying a current 1 A ,
Calculate the binding energy of an alpha particle from the following data :
17
Oct
Calculate the binding energy of an alpha particle from the following data : Calculate the binding energy of an alpha particle from the following data : October 17, 2020 Category: Uncategorised (JEE Advanced Physics by BM Sharma + GMP Solutions) ,
A nuclear reaction is given as A + B to C + D Binding energies of A, B, C, and D are given as B1 , B2, B3 and B4. Find the energy released in the reaction.
17
Oct
A nuclear reaction is given as A + B to C + D Binding energies of A, B, C, and D are given as B1 , B2, B3 and B4. Find the energy released in the reaction. A nuclear reaction is given as A + B to C + D Binding energies of A and [...]
A nucleus has binding energy of 100 MeV. It further releases 10 MeV energy. Find the new binding energy of the nucleus.
17
Oct
A nucleus has binding energy of 100 MeV. It further releases 10 MeV energy. Find the new binding energy of the nucleus. A nucleus has binding energy of 100 MeV. It further releases 10 MeV energy. Find the new binding energy of the nucleus. October 17, 2020 Category: Uncategorised (JEE Advanced Physics by BM Sharma [...]
The wavelength of the first spectral line in the Balmer series of hydrogen atom is 6561 A. The wavelength of the second spectral line in the Balmer series of singly ionized helium atom is
17
Oct
The wavelength of the first spectral line in the Balmer series of hydrogen atom is 6561 A. The wavelength of the second spectral line in the Balmer series of singly ionized helium atom is The wavelength of the first spectral line in the Balmer series of hydrogen atom is 6561 A. The wavelength of the [...]
Following data are available about three nuclei P, Q, and R. Arrange them in decreasing order of stability.
17
Oct
Following data are available about three nuclei P, Q, and R. Arrange them in decreasing order of stability. -q and R. Arrange them in decreasing order of stability. Following data are available about three nuclei P October 17, 2020 Category: Uncategorised (JEE Advanced Physics by BM Sharma + GMP Solutions) ,
Protons and neutrons exist together in an extremely small space within the nucleus. How is this possible when protons repel each other ?
17
Oct
Protons and neutrons exist together in an extremely small space within the nucleus. How is this possible when protons repel each other ? Protons and neutrons exist together in an extremely small space within the nucleus. How is this possible when protons repel each other ? October 17, 2020 Category: Uncategorised (JEE Advanced Physics by [...]