1400/ 2.5= 560
1). Frequency = (speed) / (wavelength)2). Wavelength = (speed) / (frequency)3). Speed = (frequency) x (wavelength)Use #3:Wavelength = (35 cm/s) / (25 Hz) = 1.4 cm
The frequency of a wave is the reciprocal of the period. In this case, the frequency would be 1 divided by 25 milliseconds, which equals 40 Hertz (Hz).
The wavelength is 1.4cm. It's very simple. In order to find the answer is to know the formula. Wavelength=speed divided by frequency.
The wave velocity can be calculated using the formula: wave velocity = frequency * wavelength. In this case, the wave velocity would be 10 Hz * 25 m = 250 m/s.
The frequency of the wave is the reciprocal of the period, so in this case, it would be 1/4 Hz.
1). Frequency = (speed) / (wavelength)2). Wavelength = (speed) / (frequency)3). Speed = (frequency) x (wavelength)Use #3:Wavelength = (35 cm/s) / (25 Hz) = 1.4 cm
The frequency of a wave is the reciprocal of the period. In this case, the frequency would be 1 divided by 25 milliseconds, which equals 40 Hertz (Hz).
The momentum of a 1400 kg car traveling at 25 m/s is: momentum = mass x velocity momentum = 1400 kg x 25 m/s momentum = 35,000 kg m/s Therefore, the momentum of the 1400 kg car traveling at 25 m/s is 35,000 kg m/s
The wavelength is 1.4cm. It's very simple. In order to find the answer is to know the formula. Wavelength=speed divided by frequency.
1/25 Hz
The wave velocity can be calculated using the formula: wave velocity = frequency * wavelength. In this case, the wave velocity would be 10 Hz * 25 m = 250 m/s.
The frequency of the wave is the reciprocal of the period, so in this case, it would be 1/4 Hz.
25% is 25/100 of 1400 or 1/4 of 1400 or 1400 divided by 4 =350 peter
It means the the wave has a speed of 25 vibrations per second
frequecy and period have an indirect relationship F=1/4s =.25 Hertz
Simply using the relation wavelength = velocity / frequency So required wavelength = 25/5 = 5 m
25% of 1400.00= 25% * 1400= 0.25 * 1400= 350.00