demobook

Higgsfield: Simulating real-life physics in a fight scene

Demo summary

Kling 3.0 is shown generating a boxing match from a static image, demonstrating natural body movement and physics like sweat flying off gloves.

Step-by-step

  1. Upload a static image of two people boxing
  2. Enter a simple prompt such as 'a dynamic fight'
  3. Generate the video to simulate physics and movement

Tips

  • Keep the prompt simple as the model handles the complex physics automatically
  • Look for details like sweat spray upon contact to verify physics accuracy

Highlights

With any other model, you would have to type a really long and complicated prompt. And we still wouldn't get anything near as good as this.

All demos from “Kling 3.0 Review: Realism, Camera Moves, and Emotion Tested

  1. 2:000:41Text-to-video with multi-shot in Kling 3.0The user demonstrates generating a dynamic military action scene using a text prompt and the new multi-shot feature in Kling 3.0 to create automatic scene cuts.HiggsfieldText to Video
  2. 3:150:57Generate human emotions with Image-to-VideoUsing an image of a woman crying, the creator demonstrates how Kling 3.0 handles complex human emotions and micro-expressions with a simple text prompt.HiggsfieldImage to Video
  3. 4:180:35Character consistency with reference photosThe demo shows how to upload a reference photo in Kling 3.0 to maintain a character's facial consistency when they turn toward the camera from a back-view start frame.HiggsfieldImage to Video
  4. 5:050:49Complex camera movement controlThe user prompts a robotic arm scene with specific lateral passes, crash pushes, and pull-backs to demonstrate Kling 3.0's improved camera physics and motion smoothness.HiggsfieldText to Video
  5. 6:020:54Handheld zoom and detailizationA demonstration of a handheld camera zoom-in on a girl eating an onion ring, showcasing realistic textures, sound effects, and slow-motion without morphing.HiggsfieldAI Video Generator
  6. 6:590:33Simulating real-life physics in a fight sceneCurrentKling 3.0 is shown generating a boxing match from a static image, demonstrating natural body movement and physics like sweat flying off gloves.HiggsfieldImage to Video
  7. 7:360:56VFX generation with fire and dragonsThe creator uses Kling 3.0 to animate a dragon breathing fire with a handheld shaky camera effect to simulate high-end cinematic VFX.HiggsfieldAI Movie Generator
  8. 9:331:14Multi-shot dialogue and lip syncThe user demonstrates a multi-scene dialogue sequence, showing perfect lip sync and character consistency across different camera angles using Kling 3.0.HiggsfieldAI Lip Sync Generator
  9. Watch “Kling 3.0 Review: Realism, Camera Moves, and Emotion Tested” →

Image to Video

  1. 3:260:20Create cinematic transitions between imagesThe user uploads two different images and applies the 'Raven' transition effect to create a seamless camera movement traveling through space between the scenes.Roboverse
  2. 5:421:16Multi-shot image-to-video generationThe user demonstrates Higgsfield's video interface by uploading an image and using the Kling 3.0 model with a multi-shot prompt to create a 10-second cinematic sequence with specific camera movements.Roboverse
  3. 4:031:42Animate AI scenes with Kling 3.0The narrator demonstrates converting a static scene into a video by selecting the Kling 3.0 model, adding motion prompts, and setting the duration and quality to 1080p.Money4Life
  4. 7:541:25Animate backgrounds with Higgsfield Kling 3.0The user demonstrates generating a clean background in Higgsfield and then animating it using the Kling 3.0 video model with a start-frame reference.Creating with Conor
  5. 4:150:38Automated video creation with Higgsfield SupercomputerThe video shows the Higgsfield Supercomputer agent performing research, generating images, and then automatically converting those images into a video with audio using the C-Dance 2.0 model.Malva AI
  6. 4:500:57Cinematic Video Generation with HiggsfieldThe video demonstrates using Higgsfield to generate high-quality images with GPT Image 2 and then animating them using the SeaDance 2.0 model.Malva AI
  7. 4:501:02Animate images using C Dance 2.0The demonstration shows connecting an image node to a video generation node using the C Dance 2.0 model, including adjusting aspect ratio and motion settings to produce a cinematic video.Mr.Endatah
  8. 1:39:231:28Motion control with Kling 3.0The user demonstrates copying movements from a motion library onto a static character image using the Kling 3.0 motion control model.Artturi Jalli
  9. 5:040:26Cinematic video generation with HiggsfieldThe demo shows generating an image using GPT Image 2 and then using the 'animate' feature to create a cinematic clip with SeaArt 2.0.Malva AI
  10. 2:401:13Create AI video from image and prompt nodesThe demonstrator connects a previously generated image to a video generator node and adds a cinematic prompt to create a 12-second video with complex camera movements.Mhd Labs
  11. 4:071:49Convert an AI image to video with motion promptsThe demo shows connecting an image node to a video generation node (using the Cedance 2.0 model) and adding a motion prompt to make the generated cat stand up and jump.Artturi Jalli
  12. 48:143:52Generating video from image references in Higgsfield AIThe video demonstrates the process of using character sheets and location references to generate a video clip of a character entering a room using Higgsfield AI.Higgsfield AI