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Little engineers mix bright Easter colors by layering “magic” light filters, then make sparkling suncatchers to take home. Next, they build sturdy Easter egg towers and test how much weight they can hold. On Day 2, kids explore gravity, motion, and friction through playful ramps and races, then share a simple show-and-tell board.

Join Detective Judy Hopps at Zootopia Chemistry Mission for hands-on science fun! Kids make fizzy bath bombs while exploring cause and effect, bubbles, and warm-versus-cool reactions. They’ll design Easter T-shirts with wax-resist art to discover oil-and-water “magic.” Then they’ll test how to stop apples browning and share a mini science show.

Join Detective Judy Hopps at Zootopia Chemistry Mission for hands-on science fun! Kids make fizzy bath bombs while exploring cause and effect, bubbles, and warm-versus-cool reactions. They’ll design Easter T-shirts with wax-resist art to discover oil-and-water “magic.” Then they’ll test how to stop apples browning and share a mini science show.

Little engineers mix bright Easter colors by layering “magic” light filters, then make sparkling suncatchers to take home. Next, they build sturdy Easter egg towers and test how much weight they can hold. On Day 2, kids explore gravity, motion, and friction through playful ramps and races, then share a simple show-and-tell board.

Join Detective Judy Hopps at Zootopia Chemistry Mission for hands-on science fun! Kids make fizzy bath bombs while exploring cause and effect, bubbles, and warm-versus-cool reactions. They’ll design Easter T-shirts with wax-resist art to discover oil-and-water “magic.” Then they’ll test how to stop apples browning and share a mini science show.

Little engineers mix bright Easter colors by layering “magic” light filters, then make sparkling suncatchers to take home. Next, they build sturdy Easter egg towers and test how much weight they can hold. On Day 2, kids explore gravity, motion, and friction through playful ramps and races, then share a simple show-and-tell board.

Build an AI-powered Easter Bunny Plushie! Kids use AI tools to create and remix funny voice lines, then code a button that plays a random message through a speaker. Next, they assemble the electronics inside a bunny plushie, test and troubleshoot like real tech makers, and finish with a short slideshow demo of their invention.

Hop into Easter invention x engineering fun! Kids become inventors as they design, build, and improve an Egg‑Safe Bunny Drop device, testing materials that absorb impact. They’ll grow a Fluffy Spring Crystal Garden and track changes like real scientists. Then they’ll invent an Easter LED lamp with a working switch and present their creations on a showcase board.

Build an AI-powered Easter Bunny Plushie! Kids use AI tools to create and remix funny voice lines, then code a button that plays a random message through a speaker. Next, they assemble the electronics inside a bunny plushie, test and troubleshoot like real tech makers, and finish with a short slideshow demo of their invention.

Hop into Easter invention x engineering fun! Kids become inventors as they design, build, and improve an Egg‑Safe Bunny Drop device, testing materials that absorb impact. They’ll grow a Fluffy Spring Crystal Garden and track changes like real scientists. Then they’ll invent an Easter LED lamp with a working switch and present their creations on a showcase board.

Hop into Easter invention x engineering fun! Kids become inventors as they design, build, and improve an Egg‑Safe Bunny Drop device, testing materials that absorb impact. They’ll grow a Fluffy Spring Crystal Garden and track changes like real scientists. Then they’ll invent an Easter LED lamp with a working switch and present their creations on a showcase board.

Build an AI-powered Easter Bunny Plushie! Kids use AI tools to create and remix funny voice lines, then code a button that plays a random message through a speaker. Next, they assemble the electronics inside a bunny plushie, test and troubleshoot like real tech makers, and finish with a short slideshow demo of their invention.

Using Vibe Coding (giving clear prompts and step-by-step instructions to help code take shape fast), kids build an Easter game with player movement, falling surprises, scoring, timers, and lives. They’ll design an AI Easter invitation card with a QR code that launches their game. Day 2 upgrades visuals & UX/UI, and then ends with a showcase presentation.

Let's jump into playful Chemistry and Robotics Lab! Build a mini carnival ride and see how spinning, balance, and moving parts work together. Create a dramatic iodine color‑change experiment and discover what makes reactions speed up or slow down. Then build and code a “follow-the-line” robot car, and finish with a fun PowerPoint show-and-tell.

Using Vibe Coding (giving clear prompts and step-by-step instructions to help code take shape fast), kids build an Easter game with player movement, falling surprises, scoring, timers, and lives. They’ll design an AI Easter invitation card with a QR code that launches their game. Day 2 upgrades visuals & UX/UI, and then ends with a showcase presentation.

Let's jump into playful Chemistry and Robotics Lab! Build a mini carnival ride and see how spinning, balance, and moving parts work together. Create a dramatic iodine color‑change experiment and discover what makes reactions speed up or slow down. Then build and code a “follow-the-line” robot car, and finish with a fun PowerPoint show-and-tell.

Using Vibe Coding (giving clear prompts and step-by-step instructions to help code take shape fast), kids build an Easter game with player movement, falling surprises, scoring, timers, and lives. They’ll design an AI Easter invitation card with a QR code that launches their game. Day 2 upgrades visuals & UX/UI, and then ends with a showcase presentation.

Let's jump into playful Chemistry and Robotics Lab! Build a mini carnival ride and see how spinning, balance, and moving parts work together. Create a dramatic iodine color‑change experiment and discover what makes reactions speed up or slow down. Then build and code a “follow-the-line” robot car, and finish with a fun PowerPoint show-and-tell.







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