@ellcccyy: sedikit info #dragdrivesimulator #update #foto #roblox #fyp

Rellstecu
Rellstecu
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Thursday 27 August 2026 10:58:57 GMT
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ellcccyy
Rellstecu :
link dm
2026-08-27 13:13:35
1
nevanfabian.athaya
NF Athaya :
silau u nya apa update cuy😁😁😁😁😁
2026-08-28 15:39:35
0
cs_awak312
Vans oconer☆|keizerZ :
update tanggal 29 bg
2026-08-28 14:01:44
0
alvaro.argi612
kamu gpp al :
kph ga sih
2026-08-28 11:44:09
0
bgggyyeesdsd
afy_097 :
2026-08-28 14:05:45
0
om.ganteng5099
🫡OM /\GANTENG :
gw ikut
2026-08-28 12:45:02
0
lemeslongor306
Arya geng :
katanya Mas Arya 29 update
2026-08-28 10:18:04
0
onyel023
onyel duda02 :
bikin grup di DC saja kaka ini saya tidak punya wa
2026-08-28 15:24:35
0
2015tahunkulahir
🪽Vynz— :
udah di ikuti ya
2026-08-28 08:37:38
0
dipszzkece1
dipppszz✨💸 :
update sekrangg ouyy jam 8 malem
2026-08-28 12:13:16
0
rahmatff30
ANDRA ST :
2026-08-28 08:43:37
0
anakngawur1
sepan :
2026-08-28 10:34:03
0
albar_606
🕸PEMULA🕸 :
kedua
2026-08-27 14:32:55
0
danangdwisapura
DANZ ? :
ceper gak
2026-08-27 14:23:43
0
alfan_zzz4
ALFAN/plenger👊 :
jambrapa
2026-08-27 14:38:52
0
ahmad.hamdan795
Hamdan⛎ :
pertama
2026-08-27 12:48:06
0
om.ganteng5099
🫡OM /\GANTENG :
sudah ada baju ka
2026-08-28 12:45:21
0
razqa8496
@raska jpr :
🤟🤟🤟
2026-08-28 12:52:59
0
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Other Videos

Ever wonder why your radio signal sometimes “bleeds” into other bands, or why a clean CW note sounds so much better than one with “clicks”? The answer is hidden in this mesmerizing animation of the Fourier Series. Think of a square wave—that blocky, step-like signal—not as a single thing, but as a “choir” of pure sine waves singing together. As you see in the video, we start with a single smooth wave (the fundamental frequency). Then, we start stacking odd harmonics on top of it: the 3rd, the 5th, the 7th, and so on. Why does this matter for us in Ham Radio? Here is the “aha!” moment: Nature hates a straight line. To make those sharp, square corners you see in the video, you need an infinite number of high-frequency harmonics. In your Transmitter: If your audio is clipping or your amplifier is overdriven, you are essentially “squaring off” your signal. This creates those extra harmonic layers shown in the video, which then fly out of your antenna as interference (RFI) for your neighbors. In your SDR: Your waterfall display is literally this video running in reverse. Your radio takes the messy “Wave Component Stacking” and untangles it so you can see every individual signal on the band. In CW: If your keying is too “hard” (square), you’re sending out all those extra harmonic components, causing “key clicks” across the frequency. The takeaway? Every time you look at a signal on your scope or waterfall, you’re looking at the Fourier Series in the flesh. It’s the DNA of every transmission we make. 73 from PY6CJ- João Grisi Video of: https://www.instagram.com/reel/DWA-NGDj3xm/?igsh=MWptdDBhNHg5bmxyeg== Text of: PY6CJ  #hamradio #amateurradio #hamradiocommuity #py6cj #hamradioantenna
Ever wonder why your radio signal sometimes “bleeds” into other bands, or why a clean CW note sounds so much better than one with “clicks”? The answer is hidden in this mesmerizing animation of the Fourier Series. Think of a square wave—that blocky, step-like signal—not as a single thing, but as a “choir” of pure sine waves singing together. As you see in the video, we start with a single smooth wave (the fundamental frequency). Then, we start stacking odd harmonics on top of it: the 3rd, the 5th, the 7th, and so on. Why does this matter for us in Ham Radio? Here is the “aha!” moment: Nature hates a straight line. To make those sharp, square corners you see in the video, you need an infinite number of high-frequency harmonics. In your Transmitter: If your audio is clipping or your amplifier is overdriven, you are essentially “squaring off” your signal. This creates those extra harmonic layers shown in the video, which then fly out of your antenna as interference (RFI) for your neighbors. In your SDR: Your waterfall display is literally this video running in reverse. Your radio takes the messy “Wave Component Stacking” and untangles it so you can see every individual signal on the band. In CW: If your keying is too “hard” (square), you’re sending out all those extra harmonic components, causing “key clicks” across the frequency. The takeaway? Every time you look at a signal on your scope or waterfall, you’re looking at the Fourier Series in the flesh. It’s the DNA of every transmission we make. 73 from PY6CJ- João Grisi Video of: https://www.instagram.com/reel/DWA-NGDj3xm/?igsh=MWptdDBhNHg5bmxyeg== Text of: PY6CJ #hamradio #amateurradio #hamradiocommuity #py6cj #hamradioantenna

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