period
a speedometer
The frequency and wavelength of a wave are inversely proportional; as frequency increases, wavelength decreases, and vice versa. The frequency of a wave is the number of complete oscillations it makes per unit time, measured in hertz, while the wavelength is the distance between two consecutive points of similar phase along the wave.
response time is the time in which our system respond us back, i.e. the system gives us the result of our input at what rate.. and execution time is the time taken by the system to complete the input... if the response time of our system is high then the performance of the system is not accurate..
The time taken for a planet to spin on its axis is called a "day." Specifically, it refers to the period it takes for the planet to complete one full rotation relative to the stars, known as a "sidereal day," or relative to the sun, known as a "solar day." Each planet has a different length of day based on its rotation speed.
That period of time is called a " sidereal day ". That's not the period of time for your clockor wristwatch to make a complete rotation.The earth's rotation is 23hours 56minutes and roughly 4seconds.
The time taken for one complete oscillation is called the period. It is typically measured in seconds.
The velocity=distance/time ,, Suppose that the distance covered is one complete vibration therefore the distance is called wavelength and the time is called periodic time then velocity=wavelength/periodic time also frequency= 1/periodic time therefore the velocity=wavelength*frequency
time period
its the time taken for one complete vibration.
The time it takes to complete one wavelength is determined by the frequency of the wave. It is calculated as the inverse of the frequency, using the formula T = 1/f, where T is the time period and f is the frequency.
The term for the time it takes for one complete wavelength to pass a fixed point is the period of the wave. It is measured in seconds and is inversely related to the frequency of the wave.
No, the energy of a photon is directly related to its frequency, not its period. Photons with the highest energy have the shortest wavelength and the highest frequency. Period is the time taken to complete one full cycle of a wave, and it is inversely related to frequency.
Wavelength is the distance between two successive crests or troughs in a wave. And time period is the time taken for the disturbance to move from one crest to the successive one. So wavelength/ wave period (time period) = speed of the wave.
Actually, the time for a complete to-and-fro swing of a pendulum is called its period, which is the time taken to complete one full cycle of motion. The frequency of a pendulum is the number of cycles it completes in a given time, usually measured in hertz (cycles per second).
The time needed for one wave to pass is called the period. It is the time it takes for one complete cycle of the wave to pass a given point. The period can be calculated by dividing the wavelength by the wave speed.
The time taken for a vibrating body to complete one full cycle of vibration is called the period. It is typically measured in seconds.
The time taken by one complete oscillation to cross a fixed point is called the period of a wave.