cyclone24 said:
I have a question. The RF in microwave is continuous and over a period of seconds to minutes?
For RF used in a MRI study it is pulsed. Things don't cook up inside MRI because of the pulse duration in milliseconds? So is pulse duration a factor here?
The MRI scanners are rated for 3kW - 4kW power. Microwave ovens are around 1000 watts. Any other important factors to elaborate this difference w.r.t. MRI? thanks.
Interesting question, I know that the reason why microwaves heat certain materials is because of the frequency and wave length at whcih they propagate at. Consider this as the (micro)wave alternates between positive and negative, it is the same as a magnet flipping back and forth.
All liquids and food products, such as this turkey, are made up of molecules. These molecules have positive and negative particles, so they tend to behave like microscopic magnets. As the positive half cycle of the microwave penetrates the food, the negative particles of the molecules are attracted and attempt to align themselves with this positive field of energy. Then, when the microwave energy alternates to the negative half cycle, the opposite occurs -- The negative particles are repelled and the positive particles are attracted, causing a flipping motion (actually, this reaction is the movement of the particles within each molecule, so, technically, they reverse polarity).
Now, consider that the actual frequency of the RF energy used in microwave ovens is 2450 million cycles per second! Moreover, consider that within the course of one of those cycles, the molecules would actually change their direction (polarity) twice - once for the positive half-cycle and once for the negative half-cycle. This red-hot rate of vibration causes tremendous friction within the food, and - just as rubbing your hands together makes them warm - this friction produces heat.
Fourier dictates that any waveform or pulse can be constructed by a series of superimposed sine waves. In order words any pulse can be reconstructed using the right type of sine waves. I suspect if the pulse had sinusoidal components similar to the microwave wave it would head the material. However the pulse frequency needs to rival that of the microwave in order to generate a similar type of heating affect...someone correct me if I am wrong