If the charge is evenly distributed over the sphere ... as it would be
if the sphere is a conducting material ... then the electric field at the
center of the sphere is zero.
If the sphere is not a conductor and the charge hasn't been applied to it
symmetrically, then the magnitude and direction of the electric field at the
center depend on every little detail of exactly how it's distributed on the
sphere.
Zero, because the electric field inside a charged hollow sphere is zero. This is due to the Gauss's law and symmetry of the charged hollow sphere, which results in no net electric field inside the sphere.
Inside a hollow charged sphere, the electric potential is constant and zero throughout the interior of the sphere. This is because the electric field due to the charges on the outer surface cancels out within the hollow region, resulting in no work done on a test charge to move it within the hollow sphere.
The electric field inside a charged hollow sphere is zero because the net contribution from the charges on the inner surface of the sphere cancels out due to symmetry. This means that the field created by the positive charges is equal and opposite to the field created by the negative charges, resulting in a net field of zero inside the sphere.
The electric field inside a hollow conductor is zero.
The electric field strength just outside of the hollow insulating shell is zero.
Zero, because the electric field inside a charged hollow sphere is zero. This is due to the Gauss's law and symmetry of the charged hollow sphere, which results in no net electric field inside the sphere.
Inside a hollow charged sphere, the electric potential is constant and zero throughout the interior of the sphere. This is because the electric field due to the charges on the outer surface cancels out within the hollow region, resulting in no work done on a test charge to move it within the hollow sphere.
Semi-hollow electric guitars have a hollow body with a solid center block, combining the warm tone of hollow bodies with the sustain of solid bodies. They offer a versatile sound suitable for various music genres, reduced feedback, and a lighter weight for comfortable playing.
The electric field inside a charged hollow sphere is zero because the net contribution from the charges on the inner surface of the sphere cancels out due to symmetry. This means that the field created by the positive charges is equal and opposite to the field created by the negative charges, resulting in a net field of zero inside the sphere.
From Gauss's Law, Electric Field inside is 0, and it's electric flux is equal to Qenclosed/Eo, where Eo is the electric vacuum permittivity constant. Also, outside of the sphere, it could be treated as a point charge, where the point lies at the center of the shell and has a charge equal to the total charge of the shell.
The electric field inside a hollow conductor is zero.
There are many benefits of a hollow body in an electric guitar. The hollow body of the electric guitar acts as a sound box, therefore, the sound is louder and clearer.
electric is not hollow
Yes, there are solid, hollow and semi-hollow body types of electric guitars.
Electric semi-hollow body guitars have a unique design with a hollow body and a solid center block, which creates a warm and resonant tone. They offer a balance between the feedback resistance of solid-body guitars and the rich sound of hollow-body guitars. This design allows for versatile playing styles and is favored by many musicians for its dynamic range and tonal complexity.
It is zero.
There are both types. As well as semi-hollow but most electric guitars are solid and are also called 'solidbody'