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  1. input/first frames/1300x750/bouncing ball/frame.png +3 -0
  2. input/first frames/1300x750/newton's cradle/frame.png +3 -0
  3. input/first frames/1300x750/nonsmooth contact/frame(plastic).png +3 -0
  4. input/first frames/1300x750/nonsmooth contact/frame(wood).png +3 -0
  5. input/first frames/1300x750/pendulum/frame.png +3 -0
  6. input/first frames/1300x750/slope contact/frame.png +3 -0
  7. input/first frames/1300x750/slope slider/frame(metal).png +3 -0
  8. input/first frames/1300x750/slope slider/frame(plastic).png +3 -0
  9. input/first frames/1300x750/slope slider/frame(wood).png +3 -0
  10. input/first frames/1300x750/turntable/frame(metal).png +3 -0
  11. input/first frames/1300x750/turntable/frame(plastic).png +3 -0
  12. input/first frames/1300x750/turntable/frame(wood).png +3 -0
  13. input/first frames/832x480/bouncing ball/frame.png +3 -0
  14. input/first frames/832x480/newton's cradle/frame.png +3 -0
  15. input/first frames/832x480/nonsmooth contact/frame(plastic).png +3 -0
  16. input/first frames/832x480/nonsmooth contact/frame(wood).png +3 -0
  17. input/first frames/832x480/pendulum/frame.png +3 -0
  18. input/first frames/832x480/slope contact/frame.png +3 -0
  19. input/first frames/832x480/slope slider/frame(metal).png +3 -0
  20. input/first frames/832x480/slope slider/frame(plastic).png +3 -0
  21. input/first frames/832x480/slope slider/frame(wood).png +3 -0
  22. input/first frames/832x480/turntable/frame(metal).png +3 -0
  23. input/first frames/832x480/turntable/frame(plastic).png +3 -0
  24. input/first frames/832x480/turntable/frame(wood).png +3 -0
  25. input/text prompts/bouncing ball/prompt.txt +1 -0
  26. input/text prompts/negative prompt.txt +1 -0
  27. input/text prompts/newton's cradle/prompt.txt +1 -0
  28. input/text prompts/nonsmooth contact/prompt(plastic).txt +1 -0
  29. input/text prompts/nonsmooth contact/prompt(wood).txt +1 -0
  30. input/text prompts/pendulum/prompt.txt +1 -0
  31. input/text prompts/slope contact/prompt.txt +1 -0
  32. input/text prompts/slope slider/prompt(metal).txt +1 -0
  33. input/text prompts/slope slider/prompt(plastic).txt +1 -0
  34. input/text prompts/slope slider/prompt(wood).txt +1 -0
  35. input/text prompts/turntable/prompt(metal).txt +1 -0
  36. input/text prompts/turntable/prompt(plastic).txt +1 -0
  37. input/text prompts/turntable/prompt(wood).txt +1 -0
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input/text prompts/bouncing ball/prompt.txt ADDED
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1
+ Static frontal camera view: A 121g black ball is suspended high above a wooden plank, which is fixed on a black perforated optical table. Coefficient of friction is 0.81; coefficient of restitution is 0.58. When released, the ball undergoes free fall, followed by a sequence of successive bounces with diminishing peak heights, before finally coming to rest on the plank. Maintain structural integrity and object consistency throughout: no changing shapes, no blending, and no flashing background.
input/text prompts/negative prompt.txt ADDED
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+ No adherence to physical laws. Objects defy gravity, pass through solid surfaces, and change mass and momentum without cause. Broken fluid dynamics, cloth simulation, rigid-body physics and conservation of energy; objects gain or lose kinetic energy spontaneously. Elastic collisions produce inelastic results and vice versa. Surface friction is inconsistent: objects slide on rough surfaces or stick to smooth ones. Air resistance affects some objects while others move through air unimpeded.
input/text prompts/newton's cradle/prompt.txt ADDED
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+ Static frontal camera view: A Newton's cradle assembly is consist of five identical 33g metal balls, and rests atop a black perforated optical table. Four balls hang in contact forming a stationary aligned row; the leftmost ball is pulled back to a nearly horizontal position on its individual suspension string and held propped against the tip of an independent lever mounted to a sliding rail. Upon release, the ball swings back to collide with the stationary row. Momentum transfers sequentially through the chain of balls, launching the terminal ball outward into a swing. The collisions are moderately inelastic, which visibly suppresses the ideal Newton’s cradle behavior across successive oscillation cycles. The coefficient of restitution between balls is 0.20. Maintain structural integrity and object consistency throughout: no changing shapes, no blending, and no flashing background.
input/text prompts/nonsmooth contact/prompt(plastic).txt ADDED
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1
+ Static frontal camera view: A stationary robot arm holds a 98g black plastic pyramid (apex oriented downward with a slight tilt) above a fixed 115g wooden square base with a square recess on a black optical table. The gripper opens, releasing the wood pyramid into a gravity-driven free fall. Governed by a 0.28 plastic-on-wood friction coefficient and an about 0.36 restitution coefficient, the pyramid descends, collides with the base, and bounces until settling into a stable rest, while the robot arm remains completely fixed. Maintain structural integrity and object consistency throughout: no changing shapes, no blending, and no flashing background.
input/text prompts/nonsmooth contact/prompt(wood).txt ADDED
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1
+ Static frontal camera view: A stationary robot arm holds a 43g wooden pyramid (apex oriented downward with a slight tilt) above a fixed 115g wooden square base with a square recess on a black optical table. The gripper opens, releasing the wood pyramid into a gravity-driven free fall. Governed by a 0.27 wood-on-wood friction coefficient and an about 0.33 restitution coefficient, the pyramid descends, collides with the base, and bounces until settling into a stable rest, while the robot arm remains completely fixed. Maintain structural integrity and object consistency throughout: no changing shapes, no blending, and no flashing background.
input/text prompts/pendulum/prompt.txt ADDED
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1
+ Static frontal camera view: A 318g black metal ball is fixed to the tip of a lightweight rigid rod, which rotates freely about a stationary horizontal axle mounted between two vertical posts atop a black perforated optical table. Initially, the rod angle is 10 degree, with the ball extending out to one side. Upon release, the ball follows pendulum motion: it accelerates downward past the black vertical posts, ascends on the opposite side, and continues oscillating back and forth over numerous cycles, its amplitude slowly and gradually diminishing due to friction. Maintain structural integrity and object consistency throughout: no changing shapes, no blending, and no flashing background.
input/text prompts/slope contact/prompt.txt ADDED
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1
+ Static fontal camera view: An 84g solid wood trirectangular tetrahedron is placed on a 997g fixed wood base on a black perforated optical table, initially forming a single upright rectangular block with a diagonal contact seam. Governed by gravity, a 0.39 wood-on-wood friction coefficient, and a 0.37 restitution coefficient, the tetrahedron slides down from rest from the slope surface, and bounces on the table until settling. Maintain structural integrity and object consistency throughout: no changing shapes, no blending, and no flashing background.
input/text prompts/slope slider/prompt(metal).txt ADDED
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1
+ Static frontal camera view: A 340g silver metal cube sits near the upper end of a 477g fixed wooden plank. The steep incline of the blank is 30 degree. A linear ruler and digital protractor are placed beside the assembly, all resting on a black perforated optical table. Coefficient of friction between plastic and wood is 0.26; coefficient of restitution for the cube is 0.33. Upon release, the cube slides down the inclined surface, and finally lands on the table surface. The wooden plank remains fully stationary for the entire duration of the motion. Maintain structural integrity and object consistency throughout: no changing shapes, no blending, and no flashing background.
input/text prompts/slope slider/prompt(plastic).txt ADDED
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1
+ Static top camera view: A 147g black plastic cube is positioned off-center atop a 722g wooden circular turntable driven by an electric motor undergoing a counterclockwise rotation with a constant angular velocity; the full assembly rests on an optical table. Coefficient of friction between the cube and turntable is 0.32; coefficient of restitution is approximately 0.32. During rotation, the wood cube slides on the turntable surface. Maintain structural integrity and object consistency throughout: no changing shapes, no blending, and no flashing background.
input/text prompts/slope slider/prompt(wood).txt ADDED
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1
+ Static frontal camera view: A 90g wood cube sits near the upper end of a 477g fixed wooden plank. The steep incline of the blank is 30 degree. A linear ruler and digital protractor are placed beside the assembly, all resting on a black perforated optical table. Coefficient of friction between wood and wood is 0.27; coefficient of restitution for the cube is 0.22. Upon release, the cube slides down the inclined surface, and finally lands on the table surface. The wooden plank remains fully stationary for the entire duration of the motion. Maintain structural integrity and object consistency throughout: no changing shapes, no blending, and no flashing background.
input/text prompts/turntable/prompt(metal).txt ADDED
@@ -0,0 +1 @@
 
 
1
+ Static top camera view: A 340g silver metal cube is positioned off-center atop a 722g wooden circular turntable driven by an electric motor undergoing a counterclockwise rotation with a constant angular velocity; the full assembly rests on an optical table. Coefficient of friction between the cube and turntable is 0.33; coefficient of restitution is approximately 0.23. During rotation, the wood cube slides on the turntable surface. Maintain structural integrity and object consistency throughout: no changing shapes, no blending, and no flashing background.
input/text prompts/turntable/prompt(plastic).txt ADDED
@@ -0,0 +1 @@
 
 
1
+ Static top camera view: A 147g black plastic cube is positioned off-center atop a 722g wooden circular turntable driven by an electric motor undergoing a counterclockwise rotation with a constant angular velocity; the full assembly rests on an optical table. Coefficient of friction between the cube and turntable is 0.32; coefficient of restitution is approximately 0.32. During rotation, the wood cube slides on the turntable surface. Maintain structural integrity and object consistency throughout: no changing shapes, no blending, and no flashing background.
input/text prompts/turntable/prompt(wood).txt ADDED
@@ -0,0 +1 @@
 
 
1
+ Static top camera view: A 90g wood cube is positioned off-center atop a 722g wooden circular turntable driven by an electric motor undergoing a counterclockwise rotation with a constant angular velocity; the full assembly rests on an optical table. Coefficient of friction between the cube and turntable is 0.38; coefficient of restitution is 0.29. During rotation, the wood cube slides on the turntable surface. Maintain structural integrity and object consistency throughout: no changing shapes, no blending, and no flashing background.