Oscillations and Waves
Learn the key concepts of Oscillations and Waves for A/L Physics, explained simply · Aligned with the NIE syllabus
Where this fits in the syllabus
Grade 1 · Term 2
What you'll learn
Learn the key concepts of Oscillations and Waves for A/L Physics, explained simply
About A/L Physics: The A/L Physics syllabus is structured across two academic years, covering fundamental and advanced topics in mechanics, waves, electricity, and modern physics. Every topic on Idasara Academy is mapped directly to the NIE curriculum.
Stationary (Standing) Wave
A wave pattern formed by the superposition of two identical waves travelling in opposite directions, resulting in nodes (points of zero displacement) and antinodes (points of maximum displacement).
When a wave reflects from a fixed boundary, the incident and reflected waves interfere. At nodes, destructive interference occurs (displacement always zero); at antinodes, constructive interference occurs (displacement varies between ± 2A). Energy is not transferred along the medium—it is "trapped" in the pattern. Example: Plucking a guitar string creates a stationary wave with fixed ends.
Node
A point on a stationary wave where the displacement is permanently zero.
Nodes occur at positions where the two waves are always exactly out of phase (phase difference of π). For a string fixed at both ends, nodes always exist at the ends. The distance between successive nodes is λ/2. Intuition: The string does not move at these points—like a "dead spot."
Source: Idasara knowledge pack — english/AL_SCIENCE/physics v19, short_notes: Lesson 3.4 - Stationary Waves & Resonance
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