similarities:
1. field at any point vary inversely at the square of the distance.
2. both obey superposition principle
3. the magnetic fields linear in the source just as electric field.
dissimilarities:
1. E is produced by a scalar source (q) where as B is produce by vector source (Idl)
2. E is acting along the displacement vector where as B acts perpendicular to Ixr.
3. E is not depended of θ where as B depends upon θ.
The work done in moving a charge between two points is given by the formula: Work = Charge x Voltage Given the charge z coulombs and voltage difference of 128V - 118V = 10V, the work done would be z coulombs x 10V = 10z joules.
Coulomb is a unit of electric charge while Faraday is a unit of electric charge quantity present in one mole of electrons. One Coulomb is equal to one Faraday constant, which is approximately 96,485 coulombs.
Similarities: Both density and viscosity are physical properties of a substance. They are both measures of how compact or "thick" a substance is. Differences: Density is a measure of how tightly packed the molecules are in a substance, while viscosity is a measure of a substance's resistance to flow. Density is typically measured in units of mass/volume (e.g. g/cm^3), while viscosity is measured in units of force x time/area (e.g. Pa.s).
Here are the 3 similarities and 3 differences between mechanical waves and electromagnetic waves: Similarities: Both types of waves transfer energy from one place to another. Both types of waves can be described in terms of wavelength and frequency. Both types of waves can exhibit properties like reflection, refraction, and interference. Differences: Mechanical waves require a medium (such as air, water, or solids) to travel through, while electromagnetic waves can travel through a vacuum. Mechanical waves are caused by the vibration of particles in the medium, while electromagnetic waves are produced by the oscillation of electric and magnetic fields. Mechanical waves typically have lower speeds than electromagnetic waves, which travel at the speed of light in a vacuum.
Similarities: Both light and sound waves are forms of energy that travel in waves. They can both be reflected, refracted, and diffracted. Differences: Light waves can travel through a vacuum, while sound waves require a medium to travel through. Light waves are electromagnetic waves, while sound waves are mechanical waves that require a medium to propagate. Light waves travel much faster than sound waves.
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differences between realism and realist in art