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Looking at amateur radio forums and email threads, oftentimes amateur radio operators will use 73 or 73s where one might otherwise expect to find sincerely or regards The smith chart is the usual way of plotting this. If he does, i'll upload
If he doesn't i assume he has it as incomplete When the antenna is too short, it is capacitive, and its resistance is lower I think this saves a lot of time later, looking up the qso details in the.txt log
Some folks simply don't bother with 73
I am learning about amateur radio so as i can go for my foundation licence but i was on cb back in the days, a channel nine monitor and used the 10 code and the q code but all i can see is the 73 What's a $\mu'_s$ and a $\mu''_s$ What do these numbers represent, and how can i use them in amateur radio Do they allow me to predict inductance or losses of inductors made on cores of this material
What is the relevant math? The best thing to do is to listen for a while, and notice which stations are being responded to Sometime operators will prematurely respond with their callsign, without waiting to hear if the other station has finished broadcasting It's about %80 timing and %20 luck
And, as always, good luck and 73!
I'm new to cw and one thing i couldn't figure out is when i supposed to send e e Let's say i'm calling cq and somebody answers me The qso is almost over Should it be ended like this
When the dipole is too short, its reactance will be capacitive When it's too long, inductive The exact amount of shortening depends on the thickness of the wire 0.41λ sounds like a reasonable estimate.
An ideal dipole, at resonance, will have an impedance around 73 ohms
A folded dipole, around 280 ohms How can i calculate the impedances when not at resonance Let's assume i have a span of 15m. The mnzn ferrite cores (mix 31, 73, 75) have high permeabilities above 800 µ, have fairly low volume resistivity and moderate saturation flux density
They offer high ‘q’ factors for the 1 khz to 1 mhz frequency range. The site above depicts a regular dipole, with a simple matching system First, a bit about dipole impedance The impedance of a dipole is 73 ohms at resonance, but away from the resonant frequency the impedance is different
At frequencies lower than resonance, i.e
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