Answer:
f = 0.5 Hz
v = 8 m/s
Explanation:
f = 1/T
f = 1/(2) = 0.5 Hz
v = λf
v = (2)(4) = 8 m/s
Answer:the resting position of the wave
Explanation:
Answer:
E = h ν = h c / λ energy of photon
E = 6.62E-34 * 3.00E8 / 8.00E-7
E = 6.62 * 3.00 / 8.00 * e^-19 J
=2.5E-19 J
True
Frequency is the inverse of the time period. The frequency of the wave will be 0.02.
Frequency is defined as the number of cycles per second. The time to make one complete cycle is frequency.
Frequency = 1 / period
F= 1 / T
F=1/50 sec
F=0.02 Hz.
Hence, the frequency of the wave will be 0.02.
To learn more about frequency refer to:
#SPJ2
the energy needed to split the nucleus into separate protons and neutrons
the energy needed to remove an electron from an atom
the energy needed to add an electron to an atom
Answer;
-The energy needed to split an atom into separate protons, neutrons, and electrons
Explanation;
E = mc² The equation is derived directly from Einstein’s Special Theory of Relativity .
Each of the letters of E = mc2 stands for a particular physical quantity. Writing them out in full we get:
Energy = mass × the speed of light squared
In other words: E = energy (measured in joules, J), m = mass (measured in kilograms, kg), c = the speed of light (measured in metres per second, ms-1), but this needs to be squared.
Explanation :
Einstein's equation is given by :
..............(1)
m is the mass
c is the speed of light
The energy needed to split an atom into separate protons, neutrons, and electrons can be calculated by using equation (1).
The energy needed to split the nucleus into separate protons and neutrons is called nuclear binding energy.
The energy needed to remove an electron from an atom is called ionization energy.
The energy needed to add an electron to an atom is called electron affinity.
So, the correct option is (A).