"Fast time" doesn't really make much sense, and instead of "fast frequency" you would usually say "high frequency".
Frequency means how often something repeats - in physics, this is measured in hertz, which means the same as cycles per second (or repetitions per second). A "high frequency" means that something repeats many times per second (or many times per day, or whatever unit you choose to use).
The faster the thing changes the faster the frequency of updating
The frequency of a pendulum is related to its period, or the time it takes to complete one full swing. The frequency increases as the pendulum swings faster and the period decreases. In essence, an increase in frequency means the pendulum is swinging more times per unit of time.
One terahertz (THz) is faster than one gigahertz (GHz). Terahertz frequency is equivalent to one trillion hertz, which is a thousand times faster than gigahertz frequency.
Yes, 47MHz is faster than 27MHz. The frequency of a signal is directly related to its speed, so a higher frequency indicates a faster signal.
Shortening the string of a pendulum decreases the distance it needs to travel, resulting in a shorter period for each swing. Since frequency is the number of swings per unit of time, shortening the pendulum causes it to move faster.
A higher frequency wave has more energy because energy is directly proportional to frequency in waves. Higher frequency waves have shorter wavelengths and more oscillations per unit time, which requires more energy to sustain the faster oscillations.
Yes
slow frequency hopping (SFH) technology. The difference between slow frequency hopping and fast frequency hopping is that the frequency of latter changes faster than frequency modulation
Wavelength x frequency = velocity, so if the frequency is the same for two waves moving at different velocities, the faster wave must have a longer wavelength.
Basically, neither of them is faster. the speed depends on the CPU design. the faster the frequency, the faster the processing speed.:-D
A high frequency wave typically requires more energy than a low frequency wave because it carries more oscillations per unit of time. This means that high frequency waves have a higher energy content due to the faster rate of vibration.
The frequency of a sound is what determines the pitch. A greater frequency (a faster vibration of the air) corresponds to a higher pitch, while a small frequency is what we hear as a low sound.