Automate your workflow with tyFlow and integrate Stable Diffusion through tyDiffusion for rapid, high-quality results.
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Basic knowledge of 3ds max
Understanding of rendering and 3d modeling
Access to 3ds max (recent version)
Willingness to learn AI for automation
Suitable for both beginners and professionals looking to boost efficiency with AI
AI is changing the game, and you can already feel the world speeding up. Technology is advancing rapidly, and with it comes the choice: adapt or be left behind. In the creative world, this is especially true. My course, "AI ARTIST 1.0", is designed to help you embrace AI in 3ds Max to revolutionize your workflow. Forget the complex, time-consuming processes—AI now allows you to skip the manual work and focus more on the creative side.What makes this course stand out? You will learn how to generate impressive renders directly in the 3ds Max viewport, without even needing to press the "render" button. AI will handle the routine tasks like generating textures, optimizing models, and setting up lighting schemes, giving you more time to explore ideas and refine your creative vision. Whether you're a beginner looking to enter the world of 3D or a professional wanting to enhance your speed and quality, this course will help you stay ahead."AI won’t replace artists, but artists who use AI will replace those who don’t." This course will equip you with the skills to leverage AI, making your work faster, better, and more efficient. So, are you ready to embrace the future of 3D art, or will you be left behind? The choice is yours—let's get started!
3D artists, architects, and students looking to automate rendering in 3ds Max with AI.
Beginners aiming to quickly master AI tools for rendering and boost productivity.
Professionals seeking modern AI methods for rendering, lighting, and texturing.
Students wanting to learn AI tools for future careers in architecture or 3D visualization.
Game developers wanting to use AI for generating stylized textures and quickly applying detailed textures to low-poly models.