C4D4U banner
C4D4U avatar
C4D4U
@c4d4u
订阅数239万
总播放39.7亿
视频数446
C4D4U发布于 2026年4月23日 18:302:31
Which path is the fastest 🏁 Brachistochrone Curve | C4D4U thumbnail

Which path is the fastest 🏁 Brachistochrone Curve | C4D4U

上个月长尾期
C4D4UBrachistochroneBrachistochrone curveBrachistochrone problemZykloidewhich path fastest
发布时间
2026年4月23日 18:30
视频时长
2:31
视频类型
电影与动画
频道地区
德国
发布时间判断
发布时间判断数据不足
当前频道还缺少完整的历史发布时间模式,建议继续累积频道数据后再观察最佳时段命中情况。
商业化判断
高 RPM
当前视频具备较高 RPM 区间,说明主题更接近商业化友好的广告库存,适合复盘标题、受众和内容长度。
动作建议
优先观察持续增长能力
当前视频基础条件较完整,建议继续观察近7日播放和收入是否稳定抬升,再决定是否扩写成系列内容。
播放量
1.2万
点赞数
82
评论数
31
日预估收入
$0.16 - $0.92
累计预估收入
$9.44 - $55.14
RPM 区间
$0.81 - $4.73
1日涨播放
0
7日涨播放
0
1日涨点赞
0
7日涨点赞
0
1日涨评论
0
7日涨评论
0
速度分
0%
主题聚类
C4D4U
视频说明
Welcome to a new physics race! We have 5 balls, 5 different curves, and only one goal. Before the balls start rolling: Stop the video and write your favorite in the comments! What do you think? 🚫 NO AI – 100% Handcrafted 3D Animation This video was fully simulated and rendered by me. No artificial intelligence was used. It takes a lot of passion (and rendertime!) to create these physics. 👇 Watch my first Brachistochrone video here: [Link zu deinem ersten Video: https://youtu.be/TIopneBToLQ] ⏱️ Video Chapters: 00:00 The Setup & Question 00:15 The Race starts! 00:25 Slow Motion (Side View) 01:18 Slow Motion (Side View Closer) 01:56 Slow Motion (Top View) 📐 The 4 Curves Compared: The Straight Line (The shortest path): Intuitively, we often think the shortest path results in the fastest time. However, in a race driven solely by gravity, this is a misconception! The straight track doesn't utilize gravity enough at the beginning. The ball accelerates too slowly and loses valuable time in the first few inches. The Circular Arc (The smooth curve): A nice, even arc. It's better than the straight line because it goes downhill more steeply at the start, but is it the absolute optimum? The "Deep" Curve (The extreme dip): A track that dips far below the finish line and rises steeply at the end. At its lowest point, this ball is absolutely the fastest in the entire field because it has converted the maximum amount of potential energy (height) into kinetic energy (speed). So why doesn't it usually win? Quite simply: The detour is too long. The time it gains from the top speed in the valley is lost again because it has to cover a significantly longer distance and is massively slowed down during the tough climb to the finish line. The Perfect Brachistochrone: The word comes from Greek and means "shortest time". The winning curve in this race is the mathematical optimum between "dropping steeply for rapid acceleration" and "not making the path too long". It is the perfect compromise of physics. 🎧 Watch Tip: Enjoy the exciting start with a solid beat, and then lean back during the various camera angles and the slow motion with relaxing piano music. 💻 For the 3D Geeks: All dynamics were calculated physically correctly. To render the multiple camera perspectives and high-resolution slow-motion shots smoothly and realistically, my render computer had to break a sweat again. 👨‍🏫 For Teachers & Students: This video is perfect for demonstrating the conversion of potential to kinetic energy as well as the Brachistochrone problem in the classroom. Feel free to share the video! 🔔 Don't forget to subscribe for more 3D physics experiments: https://www.youtube.com/@C4D4U?sub_confirmation=1 If you haven't heard of it yet, you should take a closer look. https://de.wikipedia.org/wiki/Brachistochrone https://google.com/search?q=brachistochrone+curve More: Gravitational Illusions: Normal: https://youtu.be/09Qnr6BlqSQ 10 x Longer https://youtu.be/xV_JQIo9pnM ♥️♥️♥️-----------♥️♥️♥️-----------♥️♥️♥️ I’m glad you enjoy my animations! If you’d like to support me and my channel, you can leave a small contribution via my PayPal link ( https://www.paypal.com/paypalme/c4d4u ) or use the Super Thanks button. Creating and rendering these videos takes a lot of time and can be quite costly, so I truly appreciate any form of support. Of course, I’m just as happy to have you watching, sharing, and commenting! ♥️♥️♥️-----------♥️♥️♥️-----------♥️♥️♥️ Rendertime: 03 Days 03 Hours 18 Minutes 20 Seconds ------------------------------------------------------------ Rendered by multiple computers! My Equipment: https://c4d4u.one/my-equipment/ ------------------------------------------------------------ In the future I will learn more Blender and Houdini FX. ------------------------------------------------------------------- Official Website: https://c4d4u.one TikTok: https://www.tiktok.com/@c4d4u Twitter: https://twitter.com/C4D4U Facebook: https://www.facebook.com/C4D4U-420803691739156 Instagram: https://www.instagram.com/c4d4u/ ******************************* ❤️❤️❤️ Relax and enjoy this video. ASMR for my eyes. Some people make it happy and satisfied. It also has a calming effect. ASMR = Autonomous sensory meridian response #Brachistochrone #Physics #C4D4U #Simulation
同主题推荐
围绕当前主题继续看高相关视频,帮助判断选题空间和内容形态。
主题:C4D4U
暂无足够的同主题视频数据。
视频常见问题

以下问题重点解释这条视频能看什么、收益为何是估算值,以及如何把它用于内容研究与竞品分析。

这个视频页能看出什么?

你可以查看播放、点赞、评论、RPM 与收益估算、发布时间、主题标签、相关视频以及所属频道背景,用来判断内容表现和后续选题方向。

为什么 RPM 和收益只是估算值?

实际收入会受到广告填充率、受众地区、季节性、广告主需求与是否开启变现等因素影响,因此页面给出的数字更适合做趋势判断和横向比较。

怎么用这个视频页做内容研究?

建议结合发布时间、主题标签、相关视频与频道历史内容,观察什么题材、节奏和发布窗口更容易拿到播放与商业化表现。