Electric Charge - Web Formulas (2024)

The electric charge is given by:

Q = It

Corresponding SI units:
coulomb (C) = ampere (A) ∙ second (s)

Where I is the electric current and t is the time (duration).

  • Electric charge is a fundamental property like mass, length etc associated with elementary particles for example electron, proton and many more.
  • Electric charge is the property responsible for electric forces which acts between nucleus and electron to bind the atom together.
  • Charges are of two kinds
    (i) negative charge
    (ii) positive charge
  • Electrons are negatively charged particles and protons, of which nucleus is made of, are positively charged particles. Actually nucleus is made of protons and neutrons but neutrons are uncharged particles.
  • Electric force between two electrons is same as electric force between two protons kept at same distance apart i. e., both set repel each other but electric force between an electron and proton placed at same distance apart is not repulsive but attractive in nature.
    (a) Like charges repel each other
    Electric Charge - Web Formulas (1)

    (b) Unlike charges attract each other
    Electric Charge - Web Formulas (2)

  • Assignment of negative charge on electron and positive charge on proton is purely conventional; it does not mean that charge on electron is less than that on proton.
  • Importance of electric forces is that it encompasses almost each and every field associated with our life; being it matter made up of atoms or molecules in which electric charges are exactly balanced or adhesive forces of glue associated with surface tension, all are electric in nature.

Unit

  • Charge on a system can be measured by comparing it with the charge on a standard body.
  • SI unit of charge is Coulomb written as C.
  • 1 Coulomb is the charge flowing through the wire in 1 second if the electric current in it is 1A.
  • Charge on electron is -1.602 * 10 -19 C and charge on proton is positive of this value.
  • Two important properties of charge are Quantization and Conservation.

(a) Quantization of charge

(i) Electric charge can exist only as an integral multiple of charge on an electron (-e) i.e.

q = ± ne, where n is an integer.

(ii) The Possible values of electric charge are q = ± 1e; ± 2e; ± 3e...

(iii) Charge less than the charge on an electron (i.e. e = 1.6 * 10-19 C) is not possible.

(b) Conservation of charge

(i) On an isolated system, total electric charge always remains constant.

(ii) Total charge on a body is equal to the algebraic sum of all the charges present on it. Every atom is electrically neutral as it contains as many electrons as the number of protons in it.

(iii) When we rub a glass rod with a piece of silk, the positive charge acquired by the glass rod is equal to negative charge acquired by the silk piece. Thus charges are produced in equal and unlike pairs.

Example (1): What is the possible value of electric charge?

(a) 1 X 1.6 X 10-19 C

(b) 2.4 X 1.6 X 10-19 C

(c) -8 X 1.6 X 10-19 C

(d) 1 X 1.8 X 10-19 C

Solution: (a)

As we know that, electric charge can exist only as an integral multiple of charge on an electron (-e) i.e.

q = ±ne, where n is an integer. So q = ±1 X 1.6 X 10-19 C

Example (2): If n=2, what will be the value of electric charge? (Given e =1.6 X 10-19 C)

(a) ±0.8 X 10-19 C

(b) ±3.2 X 10-19 C

(c) ±4.3 X 10-19 C

(d) ±6.3 X 10-19 C

Solution: (b)

We know that

q = ±ne

= 2 X 1.6 X 10-19 C

= ±3.2 X 10-19 C

Hence option (b) is correct.

Example (3): Is charge less than the charge (i.e. e = 1.6 X 10-19 C) on an electron possible?

(a) Yes (b) No

Solution :( b) As we know

q = ±ne where n is an integer i.e. n= 1, 2, 3,...

Example 4): What is the total charge of all of the protons in 1.00 kg of carbon?

(a) 4.82 X 107 C

(b) 3.96 X 107 C

(c) 4.82 X 109 C

(d) 3.96 X 1012 C

Solution: (a) We can find the number of coulombs of positive charge there are in 1.00 kg of carbon from Q=6nce, where nc is the number of atoms in 1.00 kg of carbon and the factor of 6 is present to account for the presence of 6 protons in each atom. We can find the number of atoms in 1.00 kg of carbon by setting up a proportion relating Avogadro’s number NA , the mass of carbon, and the molecular mass of carbon to nc.

Example 5): Determine the electric current in an electric circuit where the total electric charge is 6 C over 5 seconds.

Isolating I from Q = It
I = Q/t = 6 / 5 = 1.2 A

Electric Charge - Web Formulas (2024)

FAQs

Electric Charge - Web Formulas? ›

q = ± ne

e
The elementary charge, usually denoted by e , is a fundamental physical constant, defined as the electric charge carried by a single proton or, equivalently, the magnitude of the negative electric charge carried by a single electron, which has charge −1 e . Elementary charge. Common symbols.
https://en.wikipedia.org › wiki › Elementary_charge
, where n is an integer. (ii) The Possible values of electric charge are q = ± 1e; ± 2e; ± 3e... (iii) Charge less than the charge on an electron (i.e. e = 1.6 * 10-19 C) is not possible.

What are the 3 formulas for electric power? ›

Power Formula for Different Relations
  • P = VI. This formula is the mathematical expression of Ohm's law.
  • P=RI2, with regard to current and resistance. P=V2R, with regard to voltage and resistance. The above formulas are variants of Ohm's law.
  • P=Et - Power equation.
Apr 21, 2023

What is the formula for calculating electric charge? ›

Charge flow calculations are a fundamental concept in GCSE Physics that helps us determine the amount of electrical charge that flows through a conductor or a circuit in a given time. It is measured in coulombs (C) and can be calculated using the formula, Charge (C) = Current (A) x Time (s).

What is the formula for electric charge work? ›

The work done moving a charge is given by the distance moved along the direction of the electric field multiplied by the charge and the field strength. In equation form it is W=q∗E∗L where L in this case is the distance along the E-field direction, or the component of the motion that is along the E-field direction.

What is the equation for electric current charge? ›

Electric Current Formula and Unit

If a charge Q flows through the cross-section of a conductor in time t, the current I then I=Q/t. The S.I unit of charge is coulomb and measurement of electric current happens in units of coulomb per second which is 'ampere'.

What are basic electrical formulas? ›

BASIC ELECTRICAL FORMULAS
  • Ohms (R): Ohms = volts / amperes. Ohms = volts² / watts. Ohms = watts / amperes²
  • Watts (W): Watts = volts² / ohms. Watts = amperes² x ohms. Watts = volts x amperes.
  • Amperes (I): Amps = volts / ohms. Amps = watts / volts. ...
  • Electrical Rules of Thumb: Sync Speed. Approx.

What are the 3 equations used for calculating power in a circuit? ›

Section Summary
  • Electric power P is the rate (in watts) that energy is supplied by a source or dissipated by a device.
  • Three expressions for electrical power are. P=IV. P=V2R. P=I2R P = I 2 R .

What is the formula for charging voltage? ›

Examples of the Capacitor Charging Equation

The equation for stored electrical charge in a capacitor is Q=CV, where Q is the electric charge measured in coulomb (C), C is the capacitance value measured in Farads (F), and V is the applied voltage measured in volts (V).

What is the formula for electrical energy and charge? ›

Ans – The formula for electrical energy is E = V*I*t joules, where V is the potential difference, I is the current and t is the time. The formula for electrical power is Power (P) = V*I watts, where V is the potential difference and I is the current.

How do you calculate power charge? ›

Formula: Energy (kWh) = Power (Watts) × Time (hours) / 1000. How to calculate the bill from meter reading? To calculate your bill from meter readings, subtract the previous meter reading from the current reading to get the units consumed. Multiply the units by the tariff rate (in Rs/kWh) to determine the cost.

What is the electricity computation formula? ›

ELECTRICAL FORMULAS
QuantityFormulaUnit
VoltageV = I RVolt (V)
CurrentI = V RAmpere (A)
ResistanceR = V Iohm ( ω )
PowerP = VIWatt (W)
6 more rows
Feb 24, 2021

What are the three methods of charging? ›

In order to charge an object, one has to alter the charge balance of positive and negative charges. There are three ways to do it: friction, conduction and induction.

How do you calculate electric charge? ›

Q = I × t
  1. Q = Electric Charge,
  2. I = Electric Current,
  3. t = Time.
Jun 7, 2024

What is the law of electric charges formula? ›

In the equation Felect = k • Q1 • Q2 / d2 , the symbol Felect represents the electrostatic force of attraction or repulsion between objects 1 and 2.

What is the formula for electrical work? ›

Electrical work is equal to the amount of charge multiplied by the voltage difference. It describes the effort put in to move a charge between two points. This principle is embodied in the formula W = QV, where W represents work, Q charge, and V voltage.

What are the basic 3-phase electrical formulas? ›

The formula for power of a 3-phase circuit is Power = Voltage (V) x Current (I) x Power Factor (PF) x square root of three. If we assume the load on the circuit is resistive only, power factor is unity (or one) which reduces the formula to P = V x I x square root of three.

What are the 3 basics of electricity? ›

The three most basic components of electricity are voltage, current, and resistance. VOLTAGE is like the pressure that pushes water through the hose. It is measured in volts (V). CURRENT is like the diameter of the hose.

What are the names of 3 basic functions of electricity? ›

The three basic elements of electricity are: current, voltage, and resistance. Current is the flow of electrons through a conductor. Voltage is the force, or electrical pressure, that causes electrons to flow. Resistance is the opposition to current flow.

What are the three ways to write the power equation? ›

Power Formula is articulated as,
  • P = E t.
  • P = W t.
  • P = V 2 R.

References

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