国产精品天干天干,亚洲毛片在线,日韩gay小鲜肉啪啪18禁,女同Gay自慰喷水

歡迎光臨散文網(wǎng) 會(huì)員登陸 & 注冊(cè)

Electric Currents||Electromagnetism

2021-02-24 11:12 作者:湮滅的末影狐  | 我要投稿

//Well, our Italiano professor's spoken English is... a little hard to understand...

//In this chapter we discuss charge?in motion.

4.1 Electric current and current density

An electric current is charge in motion. The electric current in a wire is the amount of charge passing through it per unit time.

I%3D%5Cfrac%7B%5CDelta%20Q%7D%7B%5CDelta%20t%7D

It can also be expressed as the flux of electric current density:

I%3D%5Ciint_S%20%5Cvec%20j%20%5Ccdot%20%5Cmathrm%20d%5Cvec%20S

and electric current density is determined by the density of charge carriers?n, the?amount of charge on each carrier q, and the average speed of the carriers %5Cvec%20v.

%5Cvec%20j%20%3D%20nq%5Cvec%20v

4.2 Steady currents and?charge conservation

We've mentioned conservation of charge:

%5Cnabla%5Ccdot%20%5Cvec%20j%20%2B%5Cfrac%7B%5Cpartial%20%5Crho%7D%7B%5Cpartial%20t%7D%3D0

And in a steady or stationary current system, we know the charge density can't grow infinite,

%5Cnabla%5Ccdot%5Cvec%20j%3D0

4.3 Electrical conductivity and Ohm's law

We know in electrostatic cases %5Cvec%20E?in a conductor must be 0. But when an electric field?%5Cvec%20E exists inside a conductor and pushes free charges (electrons) inside, the result is an electric current in the direction of?%5Cvec%20E. (And that's not electrostatic case.)

%5Cvec%20j%20%3D%20%5Csigma%20%5Cvec%20E

That's the differential form of Ohm's law.?%5Csigma%20 is called the conductivity of the material.

We're more familiar to its original form:

V%3DIR

Generally the rule above should be written as

%5Cleft(%5Cbegin%7Barray%7D%7Bc%7D%0Aj_%7Bx%7D%20%5C%5C%0Aj_%7By%7D%20%5C%5C%0Aj_%7Bz%7D%0A%5Cend%7Barray%7D%5Cright)%3D%5Cleft(%5Cbegin%7Barray%7D%7Bccc%7D%0A%5Csigma_%7Bx%20x%7D%20%26%20%5Csigma_%7Bx%20y%7D%20%26%20%5Csigma_%7Bx%20z%7D%20%5C%5C%0A%5Csigma_%7By%20x%7D%20%26%20%5Csigma_%7By%20y%7D%20%26%20%5Csigma_%7By%20z%7D%20%5C%5C%0A%5Csigma_%7Bz%20x%7D%20%26%20%5Csigma_%7Bz%20y%7D%20%26%20%5Csigma_%7Bz%20z%7D%0A%5Cend%7Barray%7D%5Cright)%5Cleft(%5Cbegin%7Barray%7D%7Bc%7D%0AE_%7Bx%7D%20%5C%5C%0AE_%7By%7D%20%5C%5C%0AE_%7Bz%7D%0A%5Cend%7Barray%7D%5Cright)

Where the nine factors make up?a tensor, which here is just a matrix.

And this matrix must be symmetric:?%5Csigma_%7Bxy%7D%3D%5Csigma_%7Byx%7D,?for example.

Further more, by a suitable orientation of the xyz axis, the tensor will be diagonal:

%5Cbegin%7Barray%7D%7Bc%7D%0Aj_x%3D%5Csigma_%7Bxx%7DE_x%5C%5C%0Aj_y%3D%5Csigma_%7Byy%7DE_y%5C%5C%0Aj_z%3D%5Csigma_%7Bzz%7DE_z%0A%5Cend%7Barray%7D

(電導(dǎo)率張量一定是對(duì)稱的,因此可以對(duì)角化,當(dāng)選取該材料晶體主軸時(shí),電導(dǎo)率張量必為對(duì)角的。)

To calculate the resistance R of a rod, we have

R%3D%5Cfrac%7BL%7D%7B%5Csigma%20S%7D

where?L is the total length of the resistance, and S?is its cross-sectional area of the rod.

Electric Currents||Electromagnetism的評(píng)論 (共 條)

分享到微博請(qǐng)遵守國(guó)家法律
闵行区| 万全县| 聂荣县| 射阳县| 涞水县| 临澧县| 廉江市| 南京市| 全州县| 南宫市| 宁海县| 靖安县| 松滋市| 乐山市| 富源县| 新竹县| 汕头市| 勐海县| 尼木县| 定结县| 沾益县| 南平市| 遂昌县| 南召县| 来凤县| 邵阳市| 西华县| 胶南市| 抚松县| 孝义市| 宁蒗| 汉阴县| 黄平县| 娄底市| 苍溪县| 五莲县| 岳西县| 达尔| 杨浦区| 鹰潭市| 分宜县|