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Equation 1 · Part 5 · The Economics, Energy, and Physical Limits of Tool Protocols and the Model Context Protocol

Symbol n

Tturn=Tsystem+Ttools+∑i=1nTresult,i+TexchangeT_{\mathrm{turn}} = T_{\mathrm{system}} + T_{\mathrm{tools}} + \sum_{i=1}^{n} T_{\mathrm{result},i} + T_{\mathrm{exchange}}
nn

What this part means

n appears in the bound of this sum. The bound states where the repeated operation starts, ends, or which values it includes.

Its job in the formula

n appears in the bound of this sum. The bound states where the repeated operation starts, ends, or which values it includes.

The passage around this formula

A useful way to see the shape of the tax is to write out what actually occupies a turn’s context budget: Tturn=Tsystem+Ttools+∑i=1nTresult,i+TexchangeT_{\mathrm{turn}} = T_{\mathrm{system}} + T_{\mathrm{tools}} + \sum_{i=1}^{n} T_{\mathrm{result},i} + T_{\mathrm{exchange}}. TsystemT_{\mathrm{system}} is the operator’s own instructions, TtoolsT_{\mathrm{tools}} is the serialised cost of every tool schema currently declared, TexchangeT_{\mathrm{exchange}} is the live user message and the model’s own reply, and the summation term is every prior tool result the session has decided to keep. The point of writing it this way is that TtoolsT_{\mathrm{tools}} is paid in full on the very first turn, before a single tool has been called and before it is known whether any tool will be needed at all. A deployment that registers thirty MCP servers, each exposing a handful of…

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A variable is a named place for a value. Its letter is a local label: x can mean position in one formula and a data point in another.

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Sources cited in the article section

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