🇵🇰 NTS NAT-ICS · flashcards
NTS NAT-ICS Physics Flashcards
50 question-and-answer cards covering Physics as it is examined in NTS NAT-ICS. 24 of them are printed below, taken from across the deck — no signup, no paywall on the preview.
24 sample cards from the Physics deck
Sampled from the end of the deck, so these are different cards from the ones shown on the syllabus page.
Define frequency and period, and give the relation between them.
Frequency f is the number of oscillations per second (unit hertz, Hz); period T is the time for one oscillation. They are reciprocals: f = 1/T.
Give the formula for the time period of a mass on a spring in SHM.
T = 2π√(m/k), where m is the mass and k is the spring constant.
Distinguish between transverse and longitudinal waves with an example of each.
In a transverse wave the medium vibrates perpendicular to wave travel (e.g., light, water waves). In a longitudinal wave it vibrates parallel to wave travel (e.g., sound waves).
State the wave equation relating speed, frequency and wavelength.
v = fλ, where v = wave speed, f = frequency, λ = wavelength.
Define wavelength and amplitude of a wave.
Wavelength is the distance between two consecutive points in phase (e.g., crest to crest). Amplitude is the maximum displacement of a particle from its equilibrium position.
What is the difference between constructive and destructive interference?
Constructive interference occurs when waves meet in phase, producing larger amplitude. Destructive interference occurs when waves meet out of phase (antiphase), reducing or cancelling amplitude.
Name the property of sound that corresponds to frequency and the one that corresponds to amplitude.
Frequency determines pitch (high frequency = high pitch); amplitude determines loudness (greater amplitude = louder sound).
What is the approximate speed of sound in air at room temperature, and why can't sound travel through a vacuum?
About 340 m/s in air at ~20°C. Sound needs a material medium to transmit vibrations, so it cannot travel through a vacuum.
Define an echo and the condition for it to be heard distinctly.
An echo is sound reflected back to the listener. It is heard distinctly when the reflected sound returns after at least about 0.1 s (reflector roughly ≥17 m away).
State the Doppler effect.
The Doppler effect is the apparent change in frequency (pitch) of a wave due to relative motion between the source and the observer; frequency rises as they approach and falls as they recede.
Differentiate between heat and temperature.
Heat is the total thermal energy transferred between bodies due to temperature difference (unit joule). Temperature is a measure of the average kinetic energy of particles (unit kelvin/°C).
Convert a temperature from Celsius to Kelvin and give absolute zero in both scales.
K = °C + 273 (more precisely 273.15). Absolute zero = 0 K = −273°C.
Name the three modes of heat transfer.
Conduction, convection, and radiation.
Define specific heat capacity and give the heat formula.
Specific heat capacity is the heat needed to raise 1 kg of a substance by 1 K (unit J/kg·K). Heat: Q = mcΔT, where m is mass, c is specific heat, ΔT is temperature change.
Define latent heat of fusion and latent heat of vaporization.
Latent heat of fusion is the heat needed to change unit mass of a solid to liquid at its melting point; latent heat of vaporization is the heat to change unit mass of liquid to gas at its boiling point — both at constant temperature.
State the First Law of Thermodynamics.
Energy is conserved: the heat added to a system equals the increase in internal energy plus the work done by the system: Q = ΔU + W.
State the Second Law of Thermodynamics (one common statement).
Heat cannot spontaneously flow from a colder body to a hotter body; the entropy (disorder) of an isolated system tends to increase.
State Boyle's Law and its formula.
At constant temperature, the pressure of a fixed mass of gas is inversely proportional to its volume: P ∝ 1/V, or P₁V₁ = P₂V₂.
State Charles's Law and its formula.
At constant pressure, the volume of a fixed mass of gas is directly proportional to its absolute (Kelvin) temperature: V ∝ T, or V₁/T₁ = V₂/T₂.
Write the ideal gas equation and identify each term.
PV = nRT, where P = pressure, V = volume, n = number of moles, R = universal gas constant (8.31 J/mol·K), T = absolute temperature.
State Coulomb's Law and its formula.
The force between two point charges is directly proportional to the product of the charges and inversely proportional to the square of the distance between them: F = kq₁q₂/r², where k ≈ 9×10⁹ N·m²/C².
Define electric field intensity and give its formula and unit.
Electric field intensity is the force per unit positive charge at a point: E = F/q. Its SI unit is N/C (or V/m); it is a vector pointing away from positive charges.
State Ohm's Law and its formula, and give the unit of resistance.
At constant temperature, the current through a conductor is directly proportional to the voltage across it: V = IR. Resistance is measured in ohms (Ω).
Give the formulas for total resistance of resistors in series and in parallel.
Series: R = R₁ + R₂ + R₃ + … In parallel: 1/R = 1/R₁ + 1/R₂ + 1/R₃ + …
What this deck covers
The Physics deck follows the NTS NAT-ICS Physics syllabus — 6 chapters and 18 topics — so questions land on material that is genuinely examinable rather than trivia around it. That works out to roughly 8.3 cards per chapter.
Answers are written to be recallable, not just readable — averaging about 140 characters, which is long enough to carry the reasoning and short enough to say out loud.
A deck like this earns its keep on the second and third pass. Read the syllabus first so you know the shape of the subject, then use the cards to find the specific facts that have not stuck.
Physics flashcards FAQ
How many Physics flashcards are in this NTS NAT-ICS deck?
50 cards. This page previews 24 of them, sampled evenly across the deck so you can judge the difficulty before installing anything.
Are these NTS NAT-ICS flashcards free?
Yes. The preview here is free to read with no signup, and the full 50-card deck is free inside the Examius app.
What do the Physics cards cover?
They follow the NTS NAT-ICS Physics syllabus — 6 chapters and 18 topics — so the questions track what is actually examinable.
How should I use these flashcards?
Read the syllabus first so you know the shape of the subject, then drill the deck. Examius schedules each card with spaced repetition, so cards you keep missing come back sooner and ones you know drift further apart.