153585 A deuteron of kinetic energy $50 \mathrm{keV}$ is describing a circular orbit of radius 0.5 metre in a plane perpendicular to the magnetic field B. The kinetic energy of the proton that describes a circular orbit of radius 0.5 metre in the same plane with the same $B$ is
153588 A wire loop that encloses an area of $20 \mathrm{~cm}^{2}$ has a resistance of $10 \Omega$. The loop is placed in a magnetic field of $2.4 \mathrm{~T}$ with its plane perpendicular to the field. The loop is suddenly removed from the field. How much charge flows pass a given point in the wire?
153585 A deuteron of kinetic energy $50 \mathrm{keV}$ is describing a circular orbit of radius 0.5 metre in a plane perpendicular to the magnetic field B. The kinetic energy of the proton that describes a circular orbit of radius 0.5 metre in the same plane with the same $B$ is
153588 A wire loop that encloses an area of $20 \mathrm{~cm}^{2}$ has a resistance of $10 \Omega$. The loop is placed in a magnetic field of $2.4 \mathrm{~T}$ with its plane perpendicular to the field. The loop is suddenly removed from the field. How much charge flows pass a given point in the wire?
153585 A deuteron of kinetic energy $50 \mathrm{keV}$ is describing a circular orbit of radius 0.5 metre in a plane perpendicular to the magnetic field B. The kinetic energy of the proton that describes a circular orbit of radius 0.5 metre in the same plane with the same $B$ is
153588 A wire loop that encloses an area of $20 \mathrm{~cm}^{2}$ has a resistance of $10 \Omega$. The loop is placed in a magnetic field of $2.4 \mathrm{~T}$ with its plane perpendicular to the field. The loop is suddenly removed from the field. How much charge flows pass a given point in the wire?
153585 A deuteron of kinetic energy $50 \mathrm{keV}$ is describing a circular orbit of radius 0.5 metre in a plane perpendicular to the magnetic field B. The kinetic energy of the proton that describes a circular orbit of radius 0.5 metre in the same plane with the same $B$ is
153588 A wire loop that encloses an area of $20 \mathrm{~cm}^{2}$ has a resistance of $10 \Omega$. The loop is placed in a magnetic field of $2.4 \mathrm{~T}$ with its plane perpendicular to the field. The loop is suddenly removed from the field. How much charge flows pass a given point in the wire?
153585 A deuteron of kinetic energy $50 \mathrm{keV}$ is describing a circular orbit of radius 0.5 metre in a plane perpendicular to the magnetic field B. The kinetic energy of the proton that describes a circular orbit of radius 0.5 metre in the same plane with the same $B$ is
153588 A wire loop that encloses an area of $20 \mathrm{~cm}^{2}$ has a resistance of $10 \Omega$. The loop is placed in a magnetic field of $2.4 \mathrm{~T}$ with its plane perpendicular to the field. The loop is suddenly removed from the field. How much charge flows pass a given point in the wire?