Study sheet: Electric Current and Circuits

Course Outline

  1. Electric Charge and Current
  2. Charge Flow and Drift Speed
  3. Quasi-Static Circuit Approximation
  4. Circuit Topology Vocabulary
  5. Kirchhoff Node Law
  6. Kirchhoff Mesh Law

1. Electric Charge and Current

Key Concepts & Definitions

  • Electric charge : the electrical quantity carried by matter particles, with the quantized value q=Zeq = Ze
  • Electric current : the rate of change of charge through a section, given by I=dqdtI = \frac{dq}{dt}

β˜… Must-know

πŸ“Œ The conventional current direction is the direction of positive-charge motion and is opposite to the motion of negative charges.

Further detail

  • A proton has charge +e+e, a sodium ion Na⁺ has charge +e+e, a silicon ion Si²⁻ has charge βˆ’2e-2e, and a semiconductor hole has charge +e+e.

Memory Hook

Positive charge and negative charge move in opposite conventional-current directions.

2. Charge Flow and Drift Speed

β˜… Must-know

πŸ“ Formula β€” For n charge carriers of elementary charge e crossing a conductor section S at speed v, the current magnitude is I=envSI = envS.

πŸ“ Formula β€” The carrier drift speed is v=IenSv = \frac{I}{enS}.

  • The drift speed is approximately 10βˆ’5Β m sβˆ’110^{-5}\ \mathrm{m\,s^{-1}}, the thermal speed is approximately 106Β m sβˆ’110^6\ \mathrm{m\,s^{-1}}, and the propagation speed is approximately c=3Γ—108Β m sβˆ’1c = 3\times10^8\ \mathrm{m\,s^{-1}}.

Further detail

πŸ“ Formula β€” For a circular conductor of diameter D, the cross-sectional area is S=Ο€(D2)2S = \pi\left(\frac{D}{2}\right)^2.

Memory Hook

Charge flow through a cross-section causes current, while the resulting drift remains slow.

3. Quasi-Static Circuit Approximation

Key Concepts & Definitions

  • ARQS : The quasi-static approximation assumes that the information propagation time Ο„ is negligible compared with the characteristic variation time T, so electrical changes are treated as instantaneous throughout the circuit.

β˜… Must-know

πŸ“ Formula β€” For a circuit of length L and signal speed c, the propagation time is Ο„=Lc\tau = \frac{L}{c} and the ARQS condition is Ο„β‰ͺT\tau \ll T.

πŸ“ Formula β€” When the characteristic variation period is T=1fT = \frac{1}{f}, the ARQS condition becomes Lβ‰ͺcfL \ll \frac{c}{f}.

Further detail

  • At 50 Hz, c/f=6Γ—106Β m=6000Β kmc/f = 6\times10^6\ \mathrm{m} = 6000\ \mathrm{km}, so the ARQS is valid when the circuit length is much smaller than this scale and is generally used below about 600 km.

Memory Hook

Propagation time Ο„ β‰ͺ variation time T β†’ instantaneous circuit response.

4. Circuit Topology Vocabulary

Key Concepts & Definitions

  • Node : a point of a circuit where connected wires meet
  • Mesh : a closed part of a circuit that does not pass through the same node more than once
  • Branch : a portion of a circuit between two nodes

Essential Points

πŸ“Œ Two dipoles are in series when they carry the same current, and they are in parallel when they are subject to the same voltage.

5. Kirchhoff Node Law

Essential Points

πŸ“Œ In the quasi-static approximation, the sum of currents entering a node equals the sum of currents leaving it: βˆ‘iin=βˆ‘iout\sum i_{\mathrm{in}} = \sum i_{\mathrm{out}}.

  • The node law expresses conservation of electric charge.

Memory Hook

Charge conservation at a node β†’ incoming current equals outgoing current.

6. Kirchhoff Mesh Law

β˜… Must-know

πŸ“ Formula β€” Voltage additivity gives UAC=UAB+UBCU_{AC} = U_{AB} + U_{BC}.

πŸ“Œ In the quasi-static approximation, the algebraic sum of the voltages around a mesh in a chosen traversal direction is zero: βˆ‘U=0\sum U = 0.

Further detail

  • For a mesh with the stated voltage orientation, the relation is u3=u1+u2+u4u_3 = u_1 + u_2 + u_4.

Memory Hook

Traverse a mesh, add signed voltages, obtain zero.

Synthesis Tables

Series and Parallel Dipoles

ArrangementShared quantityDefining condition
SeriesCurrentThe dipoles carry the same current
ParallelVoltageThe dipoles are subject to the same voltage

Test your knowledge

Test your knowledge on Electric Current and Circuits with 14 multiple-choice questions with detailed corrections.

1. Regarding electric charge and current, which statements are correct?

2. Concerning the definitions and direction of electric current, select the correct statements:

Take the quiz β†’

Review with flashcards

Memorize the key concepts of Electric Current and Circuits with 32 interactive flashcards.

What is electric charge in matter particles?

The electrical quantity carried by matter particles.

What is the quantized value of electric charge?

q=Zeq = Ze

What charge does a proton have?

Charge +e+e.

See flashcards β†’

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