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Alphabetical public term index for this language.

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2,337 source-backed termsdatabase
PlatPhorm Network Graph
Machine-assisted language draft

机器辅助翻译草稿 (Chinese) for "MCP Enabled Site Node": The MCP Enabled Site Node is a graph entity for the mcp enabled site portion of the PlatPhorm News network graph. It helps operators, readers, and AI agents understand how domains, article surfaces, APIs, and services relate to the root platform.

示例草稿: The MCP Enabled Site Node made it clear which part of the PlatPhorm graph handled feeds, article pages, and service discovery.

机器辅助翻译草稿 (Chinese) for "MCP Enabled Site Record": The MCP Enabled Site Record is a metadata record for the mcp enabled site portion of the PlatPhorm News network graph. It helps operators, readers, and AI agents understand how domains, article surfaces, APIs, and services relate to the root platform.

示例草稿: The MCP Enabled Site Record made it clear which part of the PlatPhorm graph handled feeds, article pages, and service discovery.

机器辅助翻译草稿 (Chinese) for "MCP Enabled Site Snapshot": The MCP Enabled Site Snapshot is a point-in-time view for the mcp enabled site portion of the PlatPhorm News network graph. It helps operators, readers, and AI agents understand how domains, article surfaces, APIs, and services relate to the root platform.

示例草稿: The MCP Enabled Site Snapshot made it clear which part of the PlatPhorm graph handled feeds, article pages, and service discovery.

机器辅助翻译草稿 (Chinese) for "MCP Enabled Site Status": The MCP Enabled Site Status is a state indicator for the mcp enabled site portion of the PlatPhorm News network graph. It helps operators, readers, and AI agents understand how domains, article surfaces, APIs, and services relate to the root platform.

示例草稿: The MCP Enabled Site Status made it clear which part of the PlatPhorm graph handled feeds, article pages, and service discovery.
PlatPhorm AI and MCP Agents
Machine-assisted language draft

机器辅助翻译草稿 (Chinese) for "MCP Server Capability": The MCP Server Capability is a declared agent feature used by AI agents and MCP clients when working with PlatPhorm News. It provides structured context so an agent can discover tools, inspect article listings, read resources, or perform safe platform actions.

示例草稿: The agent relied on the MCP Server Capability to understand which PlatPhorm tools were safe to call for article discovery.
PlatPhorm AI and MCP Agents
Machine-assisted language draft

机器辅助翻译草稿 (Chinese) for "MCP Server Prompt": The MCP Server Prompt is a instruction template used by AI agents and MCP clients when working with PlatPhorm News. It provides structured context so an agent can discover tools, inspect article listings, read resources, or perform safe platform actions.

示例草稿: The agent relied on the MCP Server Prompt to understand which PlatPhorm tools were safe to call for article discovery.
PlatPhorm AI and MCP Agents
Machine-assisted language draft

机器辅助翻译草稿 (Chinese) for "MCP Server Resource": The MCP Server Resource is a readable MCP resource used by AI agents and MCP clients when working with PlatPhorm News. It provides structured context so an agent can discover tools, inspect article listings, read resources, or perform safe platform actions.

示例草稿: The agent relied on the MCP Server Resource to understand which PlatPhorm tools were safe to call for article discovery.
PlatPhorm AI and MCP Agents
Machine-assisted language draft

机器辅助翻译草稿 (Chinese) for "MCP Server Run": The MCP Server Run is a execution instance used by AI agents and MCP clients when working with PlatPhorm News. It provides structured context so an agent can discover tools, inspect article listings, read resources, or perform safe platform actions.

示例草稿: The agent relied on the MCP Server Run to understand which PlatPhorm tools were safe to call for article discovery.
PlatPhorm AI and MCP Agents
Machine-assisted language draft

机器辅助翻译草稿 (Chinese) for "MCP Server Tool": The MCP Server Tool is a callable agent function used by AI agents and MCP clients when working with PlatPhorm News. It provides structured context so an agent can discover tools, inspect article listings, read resources, or perform safe platform actions.

示例草稿: The agent relied on the MCP Server Tool to understand which PlatPhorm tools were safe to call for article discovery.

Map

Balls
Noun
Machine-assisted language draft

机器辅助翻译草稿 (Chinese) for "Map": A way to orient yourself in space real, fictional or virtual

示例草稿: He opened the maps app and explained it to her as she hadn't been using it every day for weeks. He wasn't listening, just waiting to speak. This mapped a comprehension assessment: low
Polymath Profiles
Machine-assisted language draft

机器辅助翻译草稿 (Chinese) for "Marie Curie": Marie Curie is a modern polymath in the Polymaths directory, associated with Physics, Chemistry, Mathematics, Education, Medicine (Radiology). Pioneering physicist and chemist who advanced our understanding of radioactivity and won two Nobel Prizes.

示例草稿: Marie Curie shows how polymathic work can connect Physics, Chemistry, Mathematics.

机器辅助翻译草稿 (Chinese) for "Martian Attitude Control": Martian Attitude Control is a space subsystem that keeps a spacecraft pointed correctly for power, thermal safety, communication, or science for Mars relay, rover, and entry operations. It uses sensors, reaction wheels, thrusters, and control laws so teams can maintain pointing without exceeding constraints while keeping evidence, reliability, and public-safe operational boundaries clear.

示例草稿: The mission team used Martian Attitude Control when the rover started a high-latency science pass, so the team could maintain pointing without exceeding constraints before the next mission decision point.

机器辅助翻译草稿 (Chinese) for "Martian Autonomy Stack": Martian Autonomy Stack is a space software layer that lets spacecraft or ground tools make bounded decisions when direct human control is delayed for Mars relay, rover, and entry operations. It uses rules, state machines, onboard checks, and fail-safe limits so teams can handle latency without losing accountability while keeping evidence, reliability, and public-safe operational boundaries clear.

示例草稿: The mission team used Martian Autonomy Stack when the rover started a high-latency science pass, so the team could handle latency without losing accountability before the next mission decision point.

机器辅助翻译草稿 (Chinese) for "Martian Command Sequence": Martian Command Sequence is a space operations artifact that orders spacecraft actions into a validated timeline for Mars relay, rover, and entry operations. It uses syntax checks, dependency rules, and simulation so teams can send instructions without hidden conflicts while keeping evidence, reliability, and public-safe operational boundaries clear.

示例草稿: The mission team used Martian Command Sequence when the rover started a high-latency science pass, so the team could send instructions without hidden conflicts before the next mission decision point.

机器辅助翻译草稿 (Chinese) for "Martian Debris Avoidance": Martian Debris Avoidance is a space safety workflow that reduces collision risk with tracked objects and mission-generated debris for Mars relay, rover, and entry operations. It uses conjunction screening, maneuver planning, and operator signoff so teams can avoid unsafe passes without overusing fuel while keeping evidence, reliability, and public-safe operational boundaries clear.

示例草稿: The mission team used Martian Debris Avoidance when the rover started a high-latency science pass, so the team could avoid unsafe passes without overusing fuel before the next mission decision point.

机器辅助翻译草稿 (Chinese) for "Martian Ephemeris Service": Martian Ephemeris Service is a space data service that publishes precise position and velocity data for mission planning for Mars relay, rover, and entry operations. It uses orbit determination, time standards, and versioned trajectory products so teams can align navigation, communications, and safety analysis while keeping evidence, reliability, and public-safe operational boundaries clear.

示例草稿: The mission team used Martian Ephemeris Service when the rover started a high-latency science pass, so the team could align navigation, communications, and safety analysis before the next mission decision point.

机器辅助翻译草稿 (Chinese) for "Martian Fault Detection": Martian Fault Detection is a space control that finds off-nominal behavior before it becomes a mission-impacting failure for Mars relay, rover, and entry operations. It uses telemetry thresholds, trend checks, and operator review so teams can choose a safe response while keeping evidence, reliability, and public-safe operational boundaries clear.

示例草稿: The mission team used Martian Fault Detection when the rover started a high-latency science pass, so the team could choose a safe response before the next mission decision point.

机器辅助翻译草稿 (Chinese) for "Martian Link Budget": Martian Link Budget is a space planning model that estimates whether a signal path has enough margin for reliable communication for Mars relay, rover, and entry operations. It uses antenna gain, path loss, modulation, and noise estimates so teams can schedule contacts with realistic margins while keeping evidence, reliability, and public-safe operational boundaries clear.

示例草稿: The mission team used Martian Link Budget when the rover started a high-latency science pass, so the team could schedule contacts with realistic margins before the next mission decision point.

机器辅助翻译草稿 (Chinese) for "Martian Radiation Shielding": Martian Radiation Shielding is a space design control that reduces exposure from charged particles and solar events for Mars relay, rover, and entry operations. It uses material selection, safe modes, and exposure modeling so teams can protect electronics and crews from known hazards while keeping evidence, reliability, and public-safe operational boundaries clear.

示例草稿: The mission team used Martian Radiation Shielding when the rover started a high-latency science pass, so the team could protect electronics and crews from known hazards before the next mission decision point.

机器辅助翻译草稿 (Chinese) for "Martian Recovery Mode": Martian Recovery Mode is a space resilience pattern that moves a spacecraft or mission system into a known safe operating state for Mars relay, rover, and entry operations. It uses health checks, fallback commands, and restart procedures so teams can restore control after anomalies while keeping evidence, reliability, and public-safe operational boundaries clear.

示例草稿: The mission team used Martian Recovery Mode when the rover started a high-latency science pass, so the team could restore control after anomalies before the next mission decision point.