The capacitance of two spheres can be calculated using the 'method of images' repeatedly. This gives the result as a fast converging series. Details: http://www.iue.tuwien.ac.at/phd/wasshuber/node77.html
No.
The ratio of the volumes of two similar spheres is the cube of the ratio of their radii. If the ratio of their radii is 59:1, then the ratio of their volumes is ( 59^3:1^3 ), which is ( 205379:1 ). Thus, the volume ratio of the two spheres is 205379:1.
Yes, all spheres are similar to each other because they all have the same shape, differing only in size. Similarity in geometry means that two shapes have the same proportions and angles, and since spheres are perfectly symmetrical and defined by their radius, any two spheres can be considered similar regardless of their size. Thus, any scaling of a sphere maintains its spherical properties.
ratio of capacitance of capacitor is given by charge\potential
mutual
The capacitance between two concentric spheres is determined by the radius of the spheres and the permittivity of the material between them. It can be calculated using the formula C 4rr / (r - r), where C is the capacitance, is the permittivity of free space, r is the radius of the inner sphere, and r is the radius of the outer sphere.
Self capacitance refers to the capacitance between the touch sensor and the ground, while mutual capacitance refers to the capacitance between two different touch sensors. In capacitive touch technology, self capacitance is used for single-touch detection, while mutual capacitance is used for multi-touch detection.
Capacitance exists between any two conductors, current carrying or not.
Capacitance is an ability to store an electric charge. "If we consider two same conductors as capacitor,the capacitance will be small even the conductors are close together for long time." this effect is called Stray Capacitance.
vertex
No.
The spheres most affected by forest fires are the flammable spheres.
Two spheres that are symmetric to each other with respect to the origin are called "antipodal spheres." This means that the centers of the spheres are equidistant from the origin but in opposite directions.
You may be looking at a list of multiple choices. I don't know, and I can't see it. The force acting on each sphere and attracting it in the direction of the other sphere is the same.
yes.
You seem to be mixing up your terminology. There is no such thing as 'self-capacitance of an inductor'! If you know the frequency and equivalent capacitance for two capacitors, then you can find the equivalent capacitive reactance of the capacitors, but that's not what you seem to be asking! I suggest you rephrase the question.
The two spheres that are responsible for erosion are the hydrosphere and the atmosphere. These spheres interact all of the time.