Q.Define time period of simple harmonic motion.
Concept understanding — Frequency And Period
Frequency and Period: The Rhythm of Repetition
Imagine a child on a swing, going back and forth. Each full cycle — forward, backward, back to the start — takes a certain amount of time. That time is the period. Now count how many such cycles happen in one second — that count is the frequency. Frequency and period describe the same repeating rhythm, just viewed from two different angles.
Everyday Intuition
Think of your own heartbeat. At rest, your heart beats roughly once every second. The period is about 1 second — the time between one beat and the next. The frequency is about 1 beat per second — how many beats occur in that same second.
If your heart speeds up, the period shrinks (less time between beats) and the frequency rises (more beats per second). Slow the heart down, and it's the reverse.
Period and frequency are inversely related — when one increases, the other decreases. Always.
Precise Definitions
Period (T) — the time taken to complete one full cycle of a repeating event, measured in seconds (s).
Frequency (f) — the number of complete cycles occurring per unit time, measured in hertz (Hz), where 1 Hz = 1 cycle per second.
T=f1f=T1
f=T1orT=f1
Worked Example
A pendulum completes 5 full swings in 10 seconds.
- Frequency: f=10 s5 cycles=0.5 Hz
- Period: T=f1=0.51=2 s
Check: in 2 seconds you get one cycle, so in 10 seconds you get 5 cycles — consistent.
Where You'll Meet This
| Context | What repeats | Typical period | Typical frequency |
|---|---|---|---|
| A tuning fork / concert pitch (the note A4) | Vibration of the prongs | ≈ 0.00227 s | 440 Hz |
| The note middle C on a piano | Air-pressure vibration | ≈ 0.0038 s | ≈ 262 Hz |
| AC electricity in India | Voltage polarity | 0.02 s | 50 Hz |
| Earth's rotation | Day and night | 24 h | 1/24 cycle per hour |
Don't confuse ordinary frequency f with angular frequency ω. They're related by ω=2πf, and ω is measured in radians per second, not hertz. You'll meet ω when studying oscillations and circular motion.
Why This Matters
Frequency and period are the basic language of anything that repeats — oscillations, waves, rotations, alternating circuits. When you read "50 Hz" for household AC supply, you now know the voltage completes 50 full cycles every second, each cycle lasting 0.02 s. When a problem gives "period = 2 s" for a pendulum, you know one full swing takes 2 seconds.
Key takeaway: period is time-per-cycle, frequency is cycles-per-time — reciprocals of each other, always.
If you've searched "Frequency And Period class 11 physics notes" or "Frequency And Period NCERT solutions", this page covers exactly that ground — the concept is a standard part of the Class 11 Physics NCERT/CBSE syllabus. It also carries real weight in JEE Main, NEET and state engineering/medical entrance exams, where questions on frequency and period test both conceptual understanding and calculation speed.
Time period is the time taken to complete one full oscillation.
T=2π/ω, SI unit second.
Step 1. The time period T of simple harmonic motion is defined as the time taken by the oscillating particle to complete exactly one full oscillation (one complete cycle back to the same position and direction of motion).
Step 2. Since one complete cycle corresponds to the phase advancing by 2π, i.e. ωT=2π, the time period is T=2π/ω, where ω is the angular frequency; the SI unit of T is the second (s).
Time period T is the time for one complete oscillation, T=2π/ω (SI unit: second).
State the definition directly, then give the formula T = 2 pi/omega derived from omega*T = 2 pi.
- Confusing time period with frequency (the reciprocal quantity).
- Omitting the formula T = 2 pi/omega and giving only a verbal definition.
- CBSE 2026Set ANNUAL1 markMCQQ.What is the SI unit of frequency?(a) hertz (Hz)(b) joule (J)(c) watt (W)(d) pascal (Pa)
›Reveal solutionSolution
Frequency = number of complete oscillations per unit time, and its SI unit is the hertz (Hz), equal to one cycle per second.
Frequency (f) of an oscillation or wave is defined as the number of complete cycles occurring per unit time:
f = 1/T (where T is the time period of one complete oscillation)
Its SI unit is the hertz (Hz), where 1 Hz = 1 cycle per second = 1 s^-1. (Joule is the unit of energy/work, watt is the unit of power, and pascal is the unit of pressure -- none of these measure a rate of repetition.)
✓Final answer(a) hertz (Hz).
- CBSE 2026Set ANNUAL1 markQ.Write the relationship between angular frequency (ω) and time period (T).
›Reveal solutionSolution
ω = 2π/T (angular frequency is 2π divided by the time period).
In one complete oscillation (one time period T), the phase of the motion advances by exactly 2π radians (a full cycle). Since angular frequency ω is defined as the rate of change of phase with time, ω = (total phase change)/(time taken) = 2π/T. Equivalently, since frequency f = 1/T (number of oscillations per second), this can also be written ω = 2πf.
✓Final answerω = 2π/T.
- CBSE 2025Set ANNUAL1 markMCQQ.The equation of displacement of a particle executing simple harmonic motion is y = sin(12πt + π/4). Frequency of the particle is (A) 8 Hz (B) 12 Hz (C) 6 Hz (D) 4 Hz
›Reveal solutionSolution
The frequency of the given SHM is 6 Hz.
The given equation is y=sin(12πt+π/4). Comparing with the standard SHM form y=Asin(ωt+ϕ), the angular frequency is:
ω=12π rad/s
Frequency is related to angular frequency by ω=2πf:
f=2πω=2π12π=6 Hz
✓Final answer(C) 6 Hz.
- CBSE 2024Set ANNUAL1 markMCQQ.The motion which repeats itself at regular intervals of time is called(a) a) Projectile motion(b) b) Curvilinear motion(c) c) Periodic motion(d) d) Non-periodic motion
›Reveal solutionSolution
[!TLDR]
c) Periodic motion
Why
By definition, motion that repeats identically after fixed time intervals is periodic motion.
[!ANSWER]
c) Periodic motion
- CBSE 2022Set ANNUAL1 markMCQQ.Match Column A item 'Time period' with the correct item in Column B.(a) kg m^2(b) Poise(c) Cp - Cv = R(d) E = mc^2(e) 1/frequency(f) distance(g) 24 hours
›Reveal solutionSolution
Time period T and frequency f are reciprocals of each other: T = 1/f.
Frequency f is defined as the number of complete oscillations (or cycles) per unit time, while the time period T is the time taken to complete one full oscillation. Since frequency counts oscillations per second and period measures seconds per oscillation, they are exact reciprocals: T = 1/f (and f = 1/T).
✓Final answerTime period — (e) 1/frequency.
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