Bigger the amplitude, bigger the wave.
When sound waves have a large amplitude, it means that the sound is louder or more intense. Amplitude is the measure of the height of the wave and correlates with the volume or energy of the sound. A larger amplitude indicates a stronger sound wave.
A longitudinal wave has a large amplitude if the particles in the medium are displaced by a significant distance from their equilibrium position. This displacement represents the maximum strength or intensity of the wave. The larger the amplitude, the more energy the wave carries.
A sound wave that has a large amplitude carries a lot of energy because the higher the waves amplitude the louder (more powerful or energetic) the wave will be. apex answer: high amplitude
A longitudinal wave with a large amplitude will have higher peaks and lower troughs compared to a wave with a smaller amplitude. It will look taller in its oscillations and have more pronounced compressions and rarefactions.
No. Amplitude refers to the height of a wave. If the wave is a sound wave a larger amplitude would mean a louder sound.
No, lower frequency does not necessarily mean more energy for amplitude. The energy of a wave is determined by its amplitude, not its frequency. The amplitude of a wave is the height of its peaks and determines the intensity or energy of the wave.
a large wave because it is built and its structure is stronger.
A wave with high amplitude has large peaks and troughs, indicating a significant amount of energy. This type of wave carries more energy than a wave with small amplitude, and can be more powerful and potentially more destructive. High-amplitude waves are often associated with phenomena like earthquakes, tsunamis, or large storm surges.
Yes, when the particles of a medium move a great distance as the wave passes, the wave typically has a large amplitude. Amplitude is a measure of how far the particles of the medium move from their rest position as the wave passes through.
A sound wave with a larger amplitude also carries more power.
amplitude of a wave depends on the intensity and goes on decreasing from its mean position
A compressional wave with a large amplitude has greater displacement of particles from their equilibrium positions, resulting in higher energy and louder sound. In contrast, a compressional wave with a small amplitude has lesser displacement of particles, lower energy, and a quieter sound.