idk because im doin homework right now and i have no clue what to put down
idk because im doin homework right now and i have no clue what to put down
The relationship between compressional wave amplitude and the intensity of a seismic event is that the amplitude of compressional waves is directly related to the energy released during the seismic event. A higher amplitude indicates a stronger seismic event with greater intensity.
If the amplitude of compression waves traveling along the spring increases, the spacing between coils of the spring will decrease. This is because the increased energy from the compression waves causes the coils to compress and come closer together. In essence, the increased amplitude results in a more compacted spring configuration.
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.
The relationship between amplitude and force is that the force required to maintain a certain amplitude of oscillation in a system is directly proportional to the square of the amplitude. This means that as the amplitude increases, the force required to sustain that motion also increases quadratically.
idk because im doin homework right now and i have no clue what to put down
idk because im doin homework right now and i have no clue what to put down
idk because im doin homework right now and i have no clue what to put down
In a spring, squeezing some coils together more tightly causes the nearby coils to be more spread apart. So this is how it increases.
In a spring, squeezing some coils together more tightly causes the nearby coils to be more spread apart
The relationship between compressional wave amplitude and the intensity of a seismic event is that the amplitude of compressional waves is directly related to the energy released during the seismic event. A higher amplitude indicates a stronger seismic event with greater intensity.
In a spring, squeezing some coils together more tightly causes the nearby coils to be more spread apart. So this is how it increases.
If the amplitude of compression waves traveling along the spring increases, the spacing between coils of the spring will decrease. This is because the increased energy from the compression waves causes the coils to compress and come closer together. In essence, the increased amplitude results in a more compacted spring configuration.
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.
idk because im doin homework right now and i have no clue what to put down
idk because im doin homework right now and i have no clue what to put down
For example, when you have a spring you pull it, and some of it is tight together, and some is spread out. The spread out part is called a Rarefaction and the tight part is compression. The direction it moves is movement of wave, and the opposite side is the movement of coil.