GPT Image Prompt
How to useCopy this prompt and paste it into ChatGPT, Gemini, Nano Banana, or your favorite AI image tool. Adjust details if needed.
Create a highly realistic vertical educational physics poster for primary school students that explains how a simple electric circuit works, styled as a premium hands-on science-center exhibit. Integrate the title “HOW A SIMPLE ELECTRIC CIRCUIT WORKS” into a narrow illuminated label running vertically along the left frame of a large wall-mounted technical demonstration board, using crisp amber lettering and no top header. Show the board straight on, filling almost the entire poster, with a real battery holder, insulated copper wires, a mechanical switch, and a small low-voltage light bulb. Do not include human characters, teacher hands, repeated cards, a circular lifecycle layout, or a top-down laboratory table. Let the physical circuit itself create the main reading path.
Arrange the circuit as an asymmetrical rectangular loop: place the battery near the lower left, a wire rising along the left side, the bulb mounted near the upper center, the switch on the right, and the return wire leading back to the battery. Use a bright continuous amber path only for the closed-circuit explanation. Attach engraved metal tags directly to each component: “ENERGY SOURCE — BATTERY” with “The battery provides energy to the circuit.”; “CONDUCTORS — WIRES” with “Metal wires provide a path for electric current.”; “DEVICE — BULB” with “The bulb changes electrical energy into light and heat.”; and “CONTROL — SWITCH” with “The switch opens or closes the circuit.”
Build the board around two operating examples shown physically within the same exhibit rather than through infographic panels. In the upper region, show the main working example as a closed circuit: the switch contacts touch, the bulb glows naturally, and the label reads “CLOSED PATH” with “Current can flow around the complete circuit.” In a smaller lower inset, show an open-circuit example using a transparent mechanical view of the same switch with a visible gap between the contacts and the bulb turned off. Label it “BROKEN PATH” with “When the switch is open, current cannot complete the circuit.” Make the contrast between closed and open paths immediately clear without implying any current flowing through the open switch.
Add restrained arrow markers around the wire labeled “CONVENTIONAL CURRENT DIRECTION,” showing arrows traveling from the battery’s positive terminal through the external circuit toward the negative terminal. Separately, include a magnified wire cutaway showing metal atoms and mobile electrons, labeled “Inside a metal wire, electrons move through the conductor.” Keep electron motion and conventional-current direction visually distinct, not combined into one set of arrows. Beneath the bulb, add a slim technical note: “The moving charges transfer energy through the circuit. They are not used up by the bulb.”
Integrate a small red metal safety plate into the lower-right frame reading “Use only classroom-safe, low-voltage batteries. Never experiment with wall outlets.” Place three detachable component shapes beside the board—a battery, a switch, and a bulb—with the challenge text “Can you trace one complete path from one battery terminal back to the other?” Render the poster with realistic technical exhibit detail: matte black perforated demonstration board, amber illumination, copper wiring, brushed steel labels, metal screws, clean wire insulation, glass-bulb reflections, subtle wear, and precise engineering finish. Keep the layout clear, age-appropriate, and scientifically accurate: do not show current through an open switch, do not show the bulb connected to only one battery terminal, do not imply electricity is stored inside the wire, do not show charges disappearing in the bulb, do not confuse electron motion with conventional current, and do not include household mains outlets, dangerous voltage, sparks, damaged wires, rounded cards, numbered step sequences, or a summary strip at the bottom.