The Electromagnetism app covers the subject for Science and engineering students, Usually it is part of electrical engineering and computer science courses, however it is also covered as the part of electronics. Since Electromagnetism and its applications are part of the over daily lives the app provides a good introduction and details on the subject.
If offers faster learning of the subjects and quick revisions at the time of exams, interviews and go through the topics whenever you need to refresh.
The app covers over 130 topics of Electromagnetic Field Theory. These 133 topics are divided in 5 units.
Some of topics Covered in this application are:
1. Introduction of Electromagnetics/Electromagnetism (EM)
2. Vector Algebra
3. Unit Vector
4. Position and Distance vectors
5. Vector Multiplication
6. Component of the Vector
7. Cartesian coordinate Systems
8. Cylindrical coordinates
9. Rectangular to Cylindrical Coordinate Transformation
10. Cylindrical to Rectangular Coordinate Transformation
11. Spherical coordinate system
12. Rectangular to Spherical Coordinate Transformation
13. Spherical to Rectangular Coordinate Transformation
14. Differential Lengths in Cartesian Coordinates
15. Differential length in Cylindrical Coordinates
16. Differential Lengths in Spherical Coordinates
17. Line Integral
18. Surface Integral
19. Volume Integral
20. Del operator
21. Del operator
22. Gradient of a Scalar
23. Divergence of a vector
24. Divergence Theorem
25. Curl of a Vector
26. Stoke’s theorem
27. Laplacian of a scalar
28. Electrostatic Field
29. Coulomb’s Law
30. Electric field intensity
31. Electric field due to charge distribution
32. Electric field due to line Charge
33. Electric field due to Surface Charge
34. Electric field due to Volume Charge
35. Electric flux density
36. Gauss's law
37. Application of Gauss's law
38. Electric potential
39. Relationship between E and V-maxwell's Equation
40. Electric dipole
41. Electric flux line
42. Energy density in electrostatic fields
43. Properties of materials
44. Convection Currents
45. Conduction Currents
46. Conductors
47. Polarization in Dielectrics
48. Field due to a polarized dielectric
49. Dielectric Constants
50. Dielectric Material
51. Continuity Equation
52. Relaxation Time
53. Boundary Condition
54. Dielectric-Dielectric Boundary Conditions
55. Conductor-Dielectric Boundary Conditions
56. Conductor-Free Space Boundary Conditions
57. Poission’s and Laplace’s equations
58. Uniqueness Theorem
59. General procedures for solving Poission’s or Laplace’s equations
60. Resistance and Capacitance
61. Parallel-Plate Capacitor
62. Coaxial Capacitor
63. Spherical Capacitor
64. Method of Image
65. A Point Charge Above a Grounded Conducting Plane
66. A Line Charge above a Grounded Conducting Plane
67. Magnetostatics
68. Biot-Savart’s Law
69. Field due to a straight current
70. Ampere's circuit law
71. Application of ampere’s law
72. Infinite Sheet of Current-Ampere's Law
73. Infinitely Long Coaxial Transmission Line-Ampere's Law
74. Magnetic flux density
75. Maxwell’s equation for static fields
76. Magnetic scalar and vector potential
77. Derivation of Biot-Savart's law
78. Derivation of Ampere's law
79. Forces due to magnetic field-moving charged particle
80. Forces due to magnetic field-Current Element
81. Forces due to magnetic field-Between Two Current Elements
82. Magnetic Torque and Moment
83. Magnetic Dipole
84. Magnetization in materials
85. Classification of Magnetic Materials
86. B-H curve
87. Magnetic Boundary Conditions
88. Inductance and Inductor
89. Magnetic Energy
90. Time varying fields
91. Faraday's Law
IMPORTANT LINKS
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</div> <div jsname="WJz9Hc" style="display:none">电磁应用涵盖了理工科学生的主体,通常它是电气工程和计算机科学课程的一部分,但它也包括如电子的一部分。由于电磁及其应用过的部分日常生活中的应用程序提供了一个很好的介绍和细节上的问题。
如果在考试,面试的时候提供主体和快速修订更快的学习和经历的主题时,你需要刷新。
该应用程序包括超过130主题电磁场理论的。这些133主题在5个单位划分。
一些在此应用中涉及的主题有:
1.引言电磁/电磁学(EM)
2.向量代数
3.单位向量
4.位置和距离向量
5.向量乘法
6. Vector的组件
7.笛卡尔坐标系统
8.圆柱坐标
9.为矩形柱坐标转换
10.圆柱到直角坐标转换
11.球面坐标系
12.矩形球面坐标转换
13.球形至直角坐标转换
14.长度差直角坐标系
15.在柱坐标的长度差
16.长度差在球坐标系
17.线积分
18.曲面积分
19.体积分
20.德尔运营商
21.德尔运营商
一个标量的22梯度
23.三岔口向量
24.散度定理
矢量的25卷曲
26.斯托克定理
标量的27拉普拉斯
28.静电场
29.库仑定律
30.电场强度
31.由于电荷分布电场
32.电场由于线充
33.电场由于表面电荷
由于体电荷34电场
35.电通量密度
36.高斯定律
37.高斯定律的应用
38.电势
39. E和V-麦克斯韦方程的关系
40.电偶极子
41.电力线
在静电场42的能量密度
材料性能43
44.对流
45.传导电流
46.导体
47.极化电介质中
48.场由于极化的介电
49.介电常数
50.绝缘材料
51.连续性方程
52.弛豫时间
53.边界条件
54.介电介质边界条件
55.导体,绝缘边界条件
56.导体自由空间边界条件
57.泊松方程和拉普拉斯方程
58.唯一性定理
59.解决泊松的或拉普拉斯方程的一般程序
60.电阻和电容
61.平行板电容器
62.同轴电容器
63.球形电容器
图像的64方法
65.点电荷以上接地导电平面
66.充电线接地导电平面上方
67.静磁
68.毕奥 - 萨伐尔定律
69.场由于直电流
70.安培定律电路
71.安培定律中的应用
72.电流安培定律的无限表
73.无限长同轴传输线,安培定律
74.磁通密度
75.麦克斯韦方程静态字段
76.磁标量和矢量势
77.推导毕奥 - 萨伐尔定律
78.推导安培定律
由于磁场运动的带电粒子79.部队
由于磁场电流元件80军
由于磁场之间的两个电流元素81.部队
82.磁力矩和力矩
83.磁偶极子
84.磁化材料
磁性材料85.分类
86. B-H曲线
87.磁场边界条件
88.电感和电感器
89.磁能
90.时间变化的磁场
91.法拉第定律
重要链接
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网址:http://www.engineeringapps.net/</div> <div class="show-more-end">