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Tested 90° to 45° Starting Drop Water Slides from 2,000 FT High | Planet Coaster 2

Splash Slide

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Tested 90° to 45° Starting Drop Water Slides from 2,000 FT High | Planet Coaster 2

6 346 просмотров · 7 дн. назад
Splash Slide
1,29 тыс. подписчиков
6 346 просмотров · 7 дн. назад
Tested 90° to 45° Starting Drop Water Slides from 2,000 FT High | Planet Coaster 2 🚀 What happens when head-first Mat Racers launch from a staggering height of 2,000 feet, testing 10 initial incline variations before slamming into a identical 300-foot vertical plunge angled at 85 degrees in Planet Coaster 2? Welcome back to the channel! Today, we are pushing Planet Coaster 2’s hydro-physics engine, gravity acceleration rates, and head-first mat racer momentum to absolute breaking points. We constructed 10 custom Mat Racer water slides suspended at an insane height of 2,000 feet above the pool basin below! While all 10 tracks share the exact same finale—a terrifying 300-foot drop angled at a steep 85 degrees—we isolated one major physics variable: the initial starting incline angle! We systematically scale the starting drops from a steep 90-degree pure vertical plunge down to a 45-degree angle, testing how initial drop slope affects top speed, G-force strain, and track stability when riders reach the 300-foot finale. Does a steeper starting drop like 90 degrees generate too much early velocity, causing rider instability on the final 85-degree drop? Or does a smoother 45-degree starting slope carry better continuous momentum straight into the splashdown basin? We put every single height setup to the ultimate terminal velocity test to find out! Here is the exact technical breakdown of all 10 Mat Racer slides featured in today’s experiment: Slide #1: 90-Degree Vertical Starting Drop - 2,000 FT Run - 300 FT 85-Degree Plunge Finale Slide #2: 85-Degree Starting Drop - 2,000 FT Run - 300 FT 85-Degree Plunge Finale Slide #3: 80-Degree Starting Drop - 2,000 FT Run - 300 FT 85-Degree Plunge Finale Slide #4: 75-Degree Starting Drop - 2,000 FT Run - 300 FT 85-Degree Plunge Finale Slide #5: 70-Degree Starting Drop - 2,000 FT Run - 300 FT 85-Degree Plunge Finale Slide #6: 65-Degree Starting Drop - 2,000 FT Run - 300 FT 85-Degree Plunge Finale Slide #7: 60-Degree Starting Drop - 2,000 FT Run - 300 FT 85-Degree Plunge Finale Slide #8: 55-Degree Starting Drop - 2,000 FT Run - 300 FT 85-Degree Plunge Finale Slide #9: 50-Degree Starting Drop - 2,000 FT Run - 300 FT 85-Degree Plunge Finale Slide #10: 45-Degree Starting Drop - 2,000 FT Run - 300 FT 85-Degree Plunge Finale Watch all 10 extreme 2,000-foot slides go head-to-head in our side-by-side speed tracking, acceleration decay, and pool splashdown landing comparison! 👉 If you love extreme theme park builds, high-altitude drop experiments, and chaotic Planet Coaster 2 physics tests, smash that LIKE button, SUBSCRIBE to the channel, and ring the NOTIFICATION BELL 🔔 so you never miss a new upload! ⏱️ TIMESTAMPS & CHAPTERS: 00:00 - 2,000 FT Starting Incline Test Setup & Scale Overview 00:22 - Slides #1-#3: Steep Drops (90°, 85° and 80° Starting Inclines) 05:18 - Slides #4-#6: Mid-Angle Drops (75°, 70° and 65° Starting Inclines) 10:10 - Slides #7-#9: Moderate Drops (60°, 55° and 50° Starting Inclines) 15:44 - Slide #10: 45° Starting Incline Run to 300 FT 85-Degree Finale 17:56 - Side-by-Side 2,000 FT Speed Tracking & Incline Acceleration Breakdown 18:40 - Thank You for Watching 🎮 ABOUT PLANET COASTER 2: Planet Coaster 2 is the premier theme park simulation game. Design breathtaking water parks, build extreme high-altitude drop slides, fine-tune incline angles, and analyze realistic guest ragdoll and hydro-friction physics! 💡 DROP A COMMENT BELOW! Which starting incline setup generated the wildest splashdown: the 90-degree vertical plunge or the 45-degree ramp? Drop your thoughts below and let me know what experiment I should build next! 📌 FOLLOW THE CHAOS: • Discord: [Your Link] • X / Twitter: [Your Link] • TikTok: [Your Link] #PlanetCoaster2 #PlanetCoaster #WaterSlide #MatRacer #2000FT #PhysicsExperiment #WaterPark #Gaming #CoasterPhysics #ExtremeDrop