Object — Spherical charge distribution used with Gauss’s theorem.
Present in chapters
14
Linked atoms
31 linked atoms.
13 Forza di Coulomb ed elettrostatica
- Problem — Charge of a sphere given the force
- Problem — Force between two spheres with equal charge
- Problem — Fermi estimate: capacitance of the Earth
14 Campo elettrico e potenziale
- Field inside a conductor
- Field of three charges in a row
- Field of a spherical shell
- Field of a point charge at 9 cm
- Field of a uniformly charged sphere
- Field on the axis of a ring
- From the field to the spherical radius
- From the potential to the charge
- Potential difference and work
- Dipole in a uniform field
- Draw the equipotentials
- Drill: distance for a given field
- Drill: work in moving a charge
- Drill: potential at the midpoint
- Worked exercise — Two connected conducting spheres
- Equipotentials and field lines perpendicular
- Worked exercise — electric dipole on the axis
- The shock in the car and the Faraday cage
- Work to separate two charges
- Field lines do not cross
- Potential of two charges at the midpoint
- Potential of a 10 nC charge
- Potential of a point charge at 1 m
- Which graph of E
- Ranking the field for various configurations
- Electrostatic shielding in a car
- Fermi estimate — electrostatic shock
- True or false on field and potential