(1)Write down the 4 Maxwell Equations, Explain each of them in
detail.
(2)What are their aplication?
(3)Write a question for each of Maxwell Equation's, and solve
it.
please write properly, your contents are not read.CLEAR
HANDWRİTE OR TXT. Thanks
Write down the four Maxwell Equations (Work on your OWN)
a. Explain them. What do they do, how are they used? What are
their applications.
b. Write an example question for each of the Maxwell equations
and Solve them.
Take your five goals and write them down in detail.
-Under each goal - write what you are doing to achieve it every
day.
You must make atleast 4 ENTRIES EVERY WEEK till the date of
submission.
Example- Goal 1- To save $1000 for a holiday by sep 2021.
June 7- saved $ 20
June 9- saved $ 20
June 11- read a book on how to do online business to make more
money.
June 12- started applying for second...
Write down Maxwell’s equations in differential and integral form
and explain the physics behind each one of them. Modify one of them
to account for the existence of magnetic monopoles.
1. write down a demand and supply equations for smartphones,
include two exogenous variables in each equation.
2. Draw a supply and demand graph for smartphones using the
above equations
3. Use your graph to show how a change in one
of your exogenous variable affects the model's
endogenous variables.
Write down Maxwell’s Equations (integral notation). Write down a
modified version of Maxwell’s Equations that includes magnetic
monopoles. Use the symbol qm for magnetic change and J for magnetic
current. Hint: Think of symmetry and units.
1- a)What are the basic principles of the mercantilist school?
Explain one of them in detail.
b)What are the basic principles of the physiocratic school?
Explain one of them in detail?
Write down your own verbal description for a dynamical system,
and write down the equations for the dynamical system. (It is fine
if this system is very simple! It is also fine if the scenario is
not very realistic, as long as the equations match the
description!)
Write the first law of thermodynamics for magnetic material, and
derive thermodynamic potentials and Maxwell equations. Determine
the difference in heat capacitance in the case of constant magnetic
field and permanent magnetization.