Signals and Signaling

Explore the Signals Around Us research roadmap.

Signals and Signaling · 15 min read · 2024-10-08

The Small Dip Produced by a Planetary Transit

A star briefly dims. A planet is one possible explanation, but the depth, repetition, neighboring stars, and measurement process must agree. Worked examples trace the inference from lost light to a candidate world.

Signals and Signaling · 15 min read · 2024-09-07

Sonar and the Time of a Returning Echo

An echo returning after 0.4 seconds seems to offer a simple distance. The investigation becomes more interesting when sound speed, beam direction, overlapping returns, and the reference for depth enter the calculation.

Signals and Signaling · 15 min read · 2023-10-15

Seismic Waves as Evidence of Earthquakes

A seismogram records motion at one place. Locating its source requires arrival times, a model of the Earth, and agreement across stations. A calculated example exposes both the power and the limits of that inference.

Signals and Signaling · 15 min read · 2023-06-01

How a Neuronal Signal Begins

A spike looks like a discrete event, but its beginning depends on continuous voltage, current, and channel dynamics. Simple calculations reveal what the computer analogy captures and what it leaves out.

Signals and Signaling · 15 min read · 2023-01-25

What Bandwidth Actually Limits

A wider channel can carry more, but only after we state what happens to signal power, noise, coding, and the rest of the path. A numerical investigation separates spectral width from useful delivery.

Signals and Signaling · 15 min read · 2021-07-15

A Connected Call with Silence at Both Ends

The call timer is moving, but nobody can hear. A constructed SIP and RTP investigation follows negotiated addresses, packet counters, and decoded audio to find what the connected indicator cannot prove.

Signals and Signaling · 15 min read · 2021-01-27

One Message Arriving Along Several Paths

A radio receiver can hear several delayed versions of the same transmission. Two-path calculations show why their sum can strengthen, fade, or distort—and why a signal-strength number cannot explain the link by itself.

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