10 to the power of 9 (109) is one billion (US) or giga- so 109 Hz is 1 GHz.
I = E / RIf the voltage across the resistor is 90 volts, and the resistance of the resistoris 9 ohms, then the current through the resistor is90/9 = 10 Amperes.Don't try this at home!The power dissipated by the resistor is E2/R = (90)2/9 = 900 watts. That's comparable to the power (heat) dissipated by a small toaster. A common composition resistor will get hot and possibly explode if it's asked to dissipate that kind of power.
it's to do with the structure of cilia and microtubules
1, 10, 3, 9, 5, 8, 7, ,7 ,9, 6 What is next weries? 11, 5 10 5 10 4 11 6 Which one?
Here are just a few industries, but can be many more. 1. Oil and gas 2. Metallurgy 3. Pharmaceuticals 4. Food 5. Environmental 6. Power generation 7. Consultants 8. Banks (analysts) 9. Risk assessment 10. And so much more! There are a lot of opportunities. This is why this is a great degree to major in.
The cost of constructing a nuclear power plant can vary widely, typically ranging from $6 billion to $9 billion or more per reactor, depending on factors such as location, regulatory requirements, and technology used. Some recent projects have reported costs exceeding $10 billion due to delays and budget overruns. Additionally, ongoing operational and maintenance expenses contribute to the overall financial considerations of nuclear energy production.
1 billion Hz = 1 billion cycles / sec = 1 x 10^9 Hz = 1 x 10^9 cycles / sec
1 GHertz (GHz) = 10^9 Hz. So you do, 500 GHz*(1Hz/10^9GHz). The GHz cancel and you are left with Hz.
118km/h = 32.8m/s Radar signal travels at speed of light F1 = 77*10^9 Hz F2 = 77*10^9[(3*10^9+32.8)/(3*10^9-32.8)] Change in F = F2 - F1 = 1684 Hz
10 to the power of 9 equals 1,000 million.
7.009 x 10^9 HzThe equation relating the energy of a photon and its frequency is E = h x f.E = h x f, where E is energy in Joules (J), h is Planck's constant (6.626 x 10^-34 J* s), and f is the frequency in Hz (1/s).KnownE=4.644 x 10^-24 J/photonh=6.626 x 10^-34 J*sUnknownff = E/h =(4.644 x 10^-24 J/photon)/(6.626 x 10^-34 J*s) =7.009 x 10^9/s = 7.009 x 10^9 Hz
3.5 times 10 to the 9 power = 3,500,000,000
The wavelength of a microwave with a frequency of 3.0 x 10^9 Hz is approximately 0.1 meters. This can be calculated using the formula: wavelength = speed of light / frequency.
10
The energy of an electromagnetic wave can be calculated using the formula E = hf, where E is energy, h is Planck's constant (6.626 x 10^-34 J*s), and f is frequency (33 x 10^9 Hz). Substituting the values gives E = 6.626 x 10^-34 * 33 x 10^9 = 2.185 x 10^-24 J.
The value of 10 raised to the power of 9 (109) is 1,000,000,000 or one billion.
6*10^9 / 2*10^3 = (6/2) * 10^9 / 10^2 = 3*10^(9-3) = 3*10^6 or 3 million.
9 ≈ 10^0.9524 lg 9 ≈ 0.9524 (where lg is log to base 10).