The period of the wave is 5 seconds because it is the time taken for one full oscillation or cycle of the wave. Period is the time taken for a wave to complete one full cycle of its motion.
The time for one complete wave oscillation is known as the period. It is the time it takes for a wave to complete one full cycle. The period is typically measured in seconds.
The period in physics is the time it takes for a wave to complete one full cycle, or for an object to complete one full oscillation. It is typically denoted by the symbol T and is measured in seconds.
The inverse of frequency.
The period of vertical spring oscillation is the time it takes for the spring to complete one full cycle of moving up and down.
"Period" has the dimensions of time. Suitable units are the second, the minute, the hour, the fortnight, etc.
The time for one complete wave oscillation is known as the period. It is the time it takes for a wave to complete one full cycle. The period is typically measured in seconds.
The period in physics is the time it takes for a wave to complete one full cycle, or for an object to complete one full oscillation. It is typically denoted by the symbol T and is measured in seconds.
The inverse of frequency.
The period of vertical spring oscillation is the time it takes for the spring to complete one full cycle of moving up and down.
"Period" has the dimensions of time. Suitable units are the second, the minute, the hour, the fortnight, etc.
The time taken by one complete oscillation to cross a fixed point is called the period of a wave.
The period of a simple pendulum is the time it takes for one full oscillation (swing) back and forth. To find the period, you can use the formula: Period = 1 / Frequency. So, if the frequency is 20 Hz, the period would be 1/20 = 0.05 seconds.
The time period of a vibrating object is the time it takes for the object to complete one full cycle of its vibration. It is the duration between two consecutive identical points in the oscillation pattern of the object. It is often measured in seconds.
The period of a 40 Hz wave is 0.025 seconds. This means that it takes 0.025 seconds for one full cycle of the wave to complete.
The period of a pendulum is the time it takes to complete one full swing back and forth. In this case, the period of the pendulum is 10 seconds (5 seconds for each half of the swing).
A complete back and forth vibration, also known as a full oscillation, for a pendulum with a period of 1.5 seconds would take a total time of 3 seconds. This time includes both the movement to one side and back to the starting point.
The period of a spring equation is the time it takes for the spring to complete one full cycle of motion, usually measured in seconds.