Tuesday 1 March 2022

Work, Energy And Power - Principal Of Conservation Of Energy

Definition Of Work, Energy And Power | Principal Of Conservation Of Energy 

WORK:-

Work is done whenever an object moves in a field of force, F (unit of force is Newton, N). If the object moves in the direction of force, work is done by the force.

However, if the object moves in a  direction opposite to the force, work is done by an external agency that moves the object.

ENERGY:-

It is the capacity for doing work. when a weight is lifted against gravity, work done by an external agency in lifting it gets stored in the weight as potential energy(by virtue of its position in the gravitational force field). 

If the weight were now allowed to fall the potential energy will get converted to kinetic energy (associated with velocity). 

Further, if the weight were to fall on a wedge, it will drive it into a piece of wood(say) thereby doing work. The process of doing work in some sense is a process of energy transfer. 

In the example cited above energy is transferred from the external agency to the weight and get stored as potential energy. When the weight falls, it still remains stored in the weight but gets converted to kinetic energy. Upon hitting the wedge, it gets transformed to heat in driving the wedge against wood friction.

Energy, W is measured in unit of Joules, J Or Newton-Metres, N-m, as it equals force N X Distance Moved (m).

PRINCIPLE OF CONSERVATION OF ENERGY:-

In Non-relativistic processes energy never gets destroyed; it gets converted from one form to another as illustrated in the above example.

Power

It is the rate of doing work(i.e., rate of transferring energy). Instantaneous power is

                                                   


Average power is given by

                                                  


The integral forms of Picture (A) are



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Monday 22 October 2018

HOW TO SOLVE THEOREMS WITH BEST EXAMPLES

HOW TO SOLVE THEOREMS WITH BEST EXAMPLES:-

This blog contents some important and useful method of solving DC network circuit or Theorems and it will be helpful for those students having problems to solve direct current circuit theorems and analysis of direct current circuits laws and their application.

In this blog, I will try to provide best ideas, Solution of solving problems, Examples based on the Electrical Theorems and How to used it in solving Direct Current equations. It will be few and basic but very important ideas of solving circuits or any dc theorems. After getting all information on my blog, please try to solved it from your side and practice it at home. 

DC network is a part of physics and basic electrical engineering syllabus/paper. Basic electrical also contents ac network, induction motor, direct circuit machine transformer,etc. 

Please also be informed that it is not possible to give full tutorial in one post. So,I always keep updating my blog-post with a new topic.


(NOTE:- All topics are going to deals in my own language; it might be some grammatical mistake and some difference in their definitions but isn’t meaning that the process or solutions are also wrong.



 Related topics to be posted:-


A. Basic ideas about circuit

B. Ohm’s law,Current&Voltage division rule, Source conversion

C. Kirchhoff’s current law (KCL) & Kirchhoff’s voltage law(kvl)

D. Star-Delta Transformation/Conversion

E. Mesh analysis/Loop analysis/Maxwell’s loop equation

F. Nodal analysis

G. Superposition Theorem

H. Thevenin’s Theorem

I. Norton’s Theorem

J. Maximum power Transfer Theorem