‹ 首页

scienceworld-circuit-builder

@zjunlp · 收录于 5 天前 · 上游提交 2 周前

This skill constructs a simple electrical circuit by connecting components like batteries, wires, and light bulbs. Use when the agent needs to test electrical conductivity or create a functional circuit for an experiment. The input is a set of available components, and the output is a fully connected circuit ready for activation.

适合你,如果需要在实验中快速搭建简单电路

/ 通过 npx 安装 校验哈希
npx oh-my-skill add zjunlp/skillnet/scienceworld-circuit-builder
/ 通过 bash 安装
curl -fsSL https://oh-my-skill.com/install.sh | bash -s -- zjunlp/skillnet/scienceworld-circuit-builder
/ 已经装过?验证本机副本,不用重装
npx oh-my-skill verify zjunlp/skillnet/scienceworld-circuit-builder
安装目标可用 --agent / --scope 或 --to 明确指定;省略时只会在唯一已存在的 agent 目录上自动选择,零命中或多命中会停止并提示。content_hash 缺失或不一致均拒装。
1112GitHub stars
~774最小装载
~774含声明引用
~785文本包总量
索引托管

怎么用

商店整理自技能原文 · 版本 7bb9a48 · 表述以原文为准
它做什么

它会根据你提供的组件,在虚拟实验室中连接电池、电线和灯泡,构建一个简单电路来测试目标物体是否导电,并最终将物体放入对应盒子。

什么时候触发

当你要求测试某个物体的导电性,或需要构建一个简单电路进行实验时触发。

装好后可以这样说
它会自动完成连接并告诉你结果。
它会构建电路并观察灯泡状态。
它会按步骤构造串联电路。
技能原文 SKILL.md作者撰写 · MIT · 7bb9a48

Instructions

1. Objective

Your goal is to build a functional electrical circuit to test the conductivity of a target object (e.g., a metal pot). The circuit's success is indicated by a light bulb turning on.

2. Prerequisites & Setup
  • Location: You must be in the workshop. If not, teleport there.
  • Components: Ensure the following are present on the table:
  • A battery
  • A light bulb (e.g., blue light bulb)
  • At least two wires (e.g., orange, yellow, green)
  • The target object to test (e.g., metal pot)
  • A blue box (for conductive objects) and an orange box (for non-conductive objects)
  • Inventory: The target object must be in your inventory. If not, locate and pick it up.
3. Core Procedure

Follow these steps to construct the series circuit. Use the exact connect actions as shown.

  1. Place the Target Object: Drop the target object from your inventory onto the floor of the workshop.
  2. Connect Power Source:
  3. connect battery anode to <Wire1> terminal 1 (e.g., orange wire)
  4. connect battery cathode to <Wire2> terminal 1 (e.g., yellow wire)
  5. Connect Light Bulb:
  6. connect <Wire1> terminal 2 to <LightBulb> cathode (e.g., blue light bulb)
  7. connect <Wire3> terminal 2 to anode in <LightBulb> (e.g., green wire)
  8. Integrate Target Object into Circuit:
  9. connect <TargetObject> terminal 1 to <Wire2> terminal 2
  10. connect <TargetObject> terminal 2 to <Wire3> terminal 1
4. Testing & Conclusion
  1. Observe: After completing the connections, wait1 for 1-2 iterations.
  2. Check Result: look around. If the light bulb is on, the target object is electrically conductive.
  3. Final Action: Based on the result:
  4. If conductive: move <TargetObject> to blue box
  5. If non-conductive: move <TargetObject> to orange box
5. Key Principles
  • Circuit Logic: This builds a simple series circuit: Battery -> Wire1 -> Light Bulb -> Wire3 -> Target Object -> Wire2 -> Battery.
  • Action Precision: Use the exact object names and connection points (anode, cathode, terminal 1/2) as observed in the environment.
  • Error Handling: If a component is missing, examine the room (look around) to identify available substitutes before proceeding.
6. Example

Task: Test whether a metal pot is electrically conductive.

  1. teleport to workshop
  2. pick up metal pot
  3. connect battery anode to orange wire terminal 1
  4. connect battery cathode to yellow wire terminal 1
  5. connect orange wire terminal 2 to blue light bulb cathode
  6. connect green wire terminal 2 to anode in blue light bulb
  7. connect metal pot terminal 1 to yellow wire terminal 2
  8. connect metal pot terminal 2 to green wire terminal 1
  9. wait1 — observe if the light bulb turns on
  10. Light bulb is on → move metal pot to blue box (conductive)
按 MIT 许可原样转载,未经改动 · 在 GitHub 查看 →

评论

登录即可评论;带「已验证安装」的,是发布者名下有本店的安装或持有记录。