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Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_2 -- cyan rubber cylinder", "B) video_1 -- red metal cube", "C) video_1 -- red rubber cylinder", "D) video_2 -- purple rubber cylinder" ]
C) video_1 -- red rubber cylinder
[]
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Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_1 -- gray rubber cylinder", "B) video_1 -- purple metal sphere", "C) video_2 -- red metal sphere", "D) video_2 -- green rubber cube" ]
C) video_2 -- red metal sphere
[]
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Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_2 -- green metal cube", "B) video_1 -- gray metal cube", "C) video_2 -- gray metal sphere", "D) video_1 -- yellow rubber sphere" ]
B) video_1 -- gray metal cube
[]
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Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_2 -- cyan rubber cube", "B) video_2 -- yellow metal sphere", "C) video_1 -- cyan rubber cube", "D) video_1 -- red metal sphere" ]
A) video_2 -- cyan rubber cube
[]
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Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_1 -- cyan rubber cube", "B) video_2 -- red metal sphere", "C) video_2 -- cyan rubber cube", "D) video_1 -- cyan metal cylinder" ]
A) video_1 -- cyan rubber cube
[]
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Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_2 -- brown rubber cube", "B) video_1 -- red rubber cylinder", "C) video_1 -- brown rubber sphere", "D) video_2 -- yellow rubber sphere" ]
A) video_2 -- brown rubber cube
[]
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Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_1 -- blue metal sphere", "B) video_1 -- cyan rubber sphere", "C) video_2 -- gray rubber cylinder", "D) video_2 -- blue rubber cylinder" ]
D) video_2 -- blue rubber cylinder
[]
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Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_1 -- blue metal sphere", "B) video_2 -- cyan rubber cylinder", "C) video_1 -- red rubber sphere", "D) video_2 -- purple metal cube" ]
A) video_1 -- blue metal sphere
[]
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Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_1 -- gray metal cylinder", "B) video_1 -- brown metal cylinder", "C) video_2 -- gray rubber cylinder", "D) video_2 -- purple metal sphere" ]
A) video_1 -- gray metal cylinder
[]
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Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_2 -- blue metal cylinder", "B) video_2 -- purple metal cylinder", "C) video_1 -- red rubber sphere", "D) video_1 -- purple metal cube" ]
B) video_2 -- purple metal cylinder
[]
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Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_1 -- purple metal cube", "B) video_2 -- yellow metal sphere", "C) video_2 -- red rubber cylinder", "D) video_1 -- cyan metal sphere" ]
D) video_1 -- cyan metal sphere
[]
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Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_1 -- purple rubber cube", "B) video_1 -- purple rubber sphere", "C) video_2 -- yellow metal sphere", "D) video_2 -- red metal sphere" ]
B) video_1 -- purple rubber sphere
[]
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Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_1 -- yellow metal cylinder", "B) video_1 -- yellow metal cube", "C) video_2 -- blue metal cube", "D) video_2 -- yellow rubber cube" ]
D) video_2 -- yellow rubber cube
[]
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Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_2 -- blue rubber cylinder", "B) video_2 -- purple rubber sphere", "C) video_1 -- purple rubber cylinder", "D) video_1 -- green metal sphere" ]
A) video_2 -- blue rubber cylinder
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_2 -- yellow metal sphere", "B) video_1 -- cyan metal cube", "C) video_2 -- red metal sphere", "D) video_1 -- yellow metal cube" ]
A) video_2 -- yellow metal sphere
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_1 -- gray rubber sphere", "B) video_1 -- cyan rubber cube", "C) video_2 -- purple metal cube", "D) video_2 -- cyan metal sphere" ]
D) video_2 -- cyan metal sphere
[]
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Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_1 -- red metal sphere", "B) video_1 -- yellow metal sphere", "C) video_2 -- green metal cube", "D) video_2 -- yellow metal cube" ]
C) video_2 -- green metal cube
[]
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Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_2 -- purple metal cylinder", "B) video_2 -- yellow metal sphere", "C) video_1 -- green rubber sphere", "D) video_1 -- green metal cylinder" ]
D) video_1 -- green metal cylinder
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_1 -- blue metal sphere", "B) video_1 -- cyan metal cube", "C) video_2 -- blue rubber cylinder", "D) video_2 -- yellow metal cylinder" ]
B) video_1 -- cyan metal cube
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_2 -- gray metal cylinder", "B) video_2 -- red metal cube", "C) video_1 -- yellow metal cylinder", "D) video_1 -- blue rubber cylinder" ]
A) video_2 -- gray metal cylinder
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_2 -- blue metal sphere", "B) video_1 -- blue rubber cylinder", "C) video_1 -- purple rubber sphere", "D) video_2 -- green rubber sphere" ]
B) video_1 -- blue rubber cylinder
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_1 -- green rubber cube", "B) video_1 -- green rubber cylinder", "C) video_2 -- red rubber cylinder", "D) video_2 -- red metal cube" ]
C) video_2 -- red rubber cylinder
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_1 -- yellow metal sphere", "B) video_1 -- cyan rubber cube", "C) video_2 -- green metal cylinder", "D) video_2 -- red rubber cube" ]
B) video_1 -- cyan rubber cube
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_1 -- yellow metal sphere", "B) video_1 -- brown rubber cylinder", "C) video_2 -- red rubber sphere", "D) video_2 -- purple metal cube" ]
B) video_1 -- brown rubber cylinder
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Kinematic_Comparison
Given two videos showing the same scene, identify which object has the highest peak velocity.
[ "A) video_2 -- green metal sphere", "B) video_1 -- cyan rubber sphere", "C) video_1 -- cyan metal sphere", "D) video_2 -- purple rubber cylinder" ]
B) video_1 -- cyan rubber sphere
[]
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Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 2 -- 1", "B) most and second most have the same number of collisions -- 0", "C) Video 1 -- 3", "D) Video 2 -- 2", "E) Video 1 -- 1" ]
A) Video 2 -- 1
[]
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Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) most and second most have the same number of collisions -- 0", "B) Video 2 -- 3", "C) Video 2 -- 1", "D) Video 1 -- 2", "E) Video 1 -- 1" ]
E) Video 1 -- 1
[]
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Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 2 -- 1", "B) Video 2 -- 4", "C) Video 1 -- 2", "D) most and second most have the same number of collisions -- 0", "E) Video 1 -- 1" ]
E) Video 1 -- 1
[]
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Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 1 -- 2", "B) Video 2 -- 4", "C) most and second most have the same number of collisions -- 0", "D) Video 2 -- 2", "E) Video 1 -- 1" ]
D) Video 2 -- 2
[]
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Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 2 -- 1", "B) most and second most have the same number of collisions -- 0", "C) Video 1 -- 1", "D) Video 2 -- 4", "E) Video 1 -- 2" ]
A) Video 2 -- 1
[]
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Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 1 -- 2", "B) Video 2 -- 2", "C) Video 1 -- 5", "D) most and second most have the same number of collisions -- 0", "E) Video 2 -- 1" ]
A) Video 1 -- 2
[]
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Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 2 -- 2", "B) Video 1 -- 3", "C) Video 2 -- 1", "D) Video 1 -- 1", "E) most and second most have the same number of collisions -- 0" ]
D) Video 1 -- 1
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 1 -- 4", "B) most and second most have the same number of collisions -- 0", "C) Video 1 -- 5", "D) Video 2 -- 3", "E) Video 2 -- 4" ]
A) Video 1 -- 4
[]
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Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) most and second most have the same number of collisions -- 0", "B) Video 2 -- 1", "C) Video 1 -- 3", "D) Video 2 -- 4", "E) Video 1 -- 1" ]
E) Video 1 -- 1
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 1 -- 2", "B) Video 1 -- 4", "C) Video 2 -- 5", "D) Video 2 -- 2", "E) most and second most have the same number of collisions -- 0" ]
A) Video 1 -- 2
[]
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Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) most and second most have the same number of collisions -- 0", "B) Video 1 -- 1", "C) Video 2 -- 2", "D) Video 1 -- 3", "E) Video 2 -- 1" ]
B) Video 1 -- 1
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 2 -- 2", "B) most and second most have the same number of collisions -- 0", "C) Video 1 -- 2", "D) Video 1 -- 3", "E) Video 2 -- 1" ]
A) Video 2 -- 2
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 2 -- 1", "B) most and second most have the same number of collisions -- 0", "C) Video 1 -- 1", "D) Video 1 -- 4", "E) Video 2 -- 3" ]
A) Video 2 -- 1
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 1 -- 4", "B) Video 1 -- 2", "C) most and second most have the same number of collisions -- 0", "D) Video 2 -- 2", "E) Video 2 -- 1" ]
B) Video 1 -- 2
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 2 -- 2", "B) Video 1 -- 2", "C) Video 1 -- 4", "D) most and second most have the same number of collisions -- 0", "E) Video 2 -- 5" ]
A) Video 2 -- 2
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 1 -- 2", "B) Video 2 -- 2", "C) most and second most have the same number of collisions -- 0", "D) Video 1 -- 3", "E) Video 2 -- 1" ]
A) Video 1 -- 2
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 1 -- 4", "B) most and second most have the same number of collisions -- 0", "C) Video 2 -- 3", "D) Video 1 -- 1", "E) Video 2 -- 1" ]
E) Video 2 -- 1
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 1 -- 1", "B) Video 2 -- 4", "C) most and second most have the same number of collisions -- 0", "D) Video 1 -- 3", "E) Video 2 -- 1" ]
E) Video 2 -- 1
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) most and second most have the same number of collisions -- 0", "B) Video 2 -- 4", "C) Video 1 -- 2", "D) Video 2 -- 2", "E) Video 1 -- 1" ]
C) Video 1 -- 2
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) most and second most have the same number of collisions -- 0", "B) Video 2 -- 3", "C) Video 1 -- 1", "D) Video 1 -- 2", "E) Video 2 -- 2" ]
D) Video 1 -- 2
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 2 -- 1", "B) Video 1 -- 1", "C) Video 1 -- 2", "D) most and second most have the same number of collisions -- 0", "E) Video 2 -- 3" ]
B) Video 1 -- 1
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 1 -- 4", "B) Video 1 -- 1", "C) Video 2 -- 1", "D) most and second most have the same number of collisions -- 0", "E) Video 2 -- 2" ]
B) Video 1 -- 1
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 2 -- 2", "B) Video 2 -- 1", "C) Video 1 -- 1", "D) Video 1 -- 4", "E) most and second most have the same number of collisions -- 0" ]
B) Video 2 -- 1
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 2 -- 4", "B) Video 1 -- 1", "C) Video 2 -- 1", "D) most and second most have the same number of collisions -- 0", "E) Video 1 -- 2" ]
B) Video 1 -- 1
[]
Not supported with pagination yet
Comparative_Reasoning
Clvr_Numerical_Comparison
Compare the total number of collisions across the 2 videos. Which video has the most collisions, and what is the numerical difference in collisions between this video and the video with the second most collisions? Select the correct option below.
[ "A) Video 2 -- 1", "B) Video 1 -- 2", "C) Video 1 -- 3", "D) most and second most have the same number of collisions -- 0", "E) Video 2 -- 2" ]
B) Video 1 -- 2
[]
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Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'bed' are present in this scene?
[ "A) 2", "B) 1", "C) 4", "D) 3" ]
B) 1
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'mirror' are present in this scene?
[ "A) 0", "B) 2", "C) 5", "D) 1" ]
B) 2
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'laundry machine' are present in this scene?
[ "A) 2", "B) 4", "C) 0", "D) 1" ]
A) 2
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'table lamp' are present in this scene?
[ "A) 0", "B) 4", "C) 1", "D) 2" ]
D) 2
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'kitchen cabinet' are present in this scene?
[ "A) 3", "B) 1", "C) 6", "D) 2" ]
A) 3
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'kitchen cabinet' are present in this scene?
[ "A) 4", "B) 0", "C) 3", "D) 5" ]
C) 3
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'refrigerator cabinet' are present in this scene?
[ "A) 4", "B) 3", "C) 5", "D) 0" ]
B) 3
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'mirror' are present in this scene?
[ "A) 3", "B) 5", "C) 4", "D) 2" ]
D) 2
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'fireplace' are present in this scene?
[ "A) 4", "B) 2", "C) 5", "D) 0" ]
B) 2
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'decorative plant' are present in this scene?
[ "A) 3", "B) 0", "C) 1", "D) 2" ]
C) 1
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'fireplace' are present in this scene?
[ "A) 4", "B) 2", "C) 3", "D) 1" ]
D) 1
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'monitor' are present in this scene?
[ "A) 0", "B) 2", "C) 1", "D) 5" ]
B) 2
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'washing machine and dryer' are present in this scene?
[ "A) 4", "B) 2", "C) 0", "D) 3" ]
B) 2
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'fan' are present in this scene?
[ "A) 2", "B) 1", "C) 4", "D) 3" ]
B) 1
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'couch' are present in this scene?
[ "A) 4", "B) 0", "C) 5", "D) 2" ]
D) 2
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'bed' are present in this scene?
[ "A) 1", "B) 3", "C) 4", "D) 2" ]
D) 2
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'thermostat' are present in this scene?
[ "A) 1", "B) 4", "C) 2", "D) 0" ]
A) 1
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'mirror' are present in this scene?
[ "A) 0", "B) 5", "C) 1", "D) 2" ]
D) 2
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'kitchen cabinet' are present in this scene?
[ "A) 0", "B) 6", "C) 4", "D) 3" ]
D) 3
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'bed' are present in this scene?
[ "A) 3", "B) 4", "C) 1", "D) 6" ]
A) 3
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'couch' are present in this scene?
[ "A) 6", "B) 2", "C) 3", "D) 5" ]
C) 3
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'storage cabinet' are present in this scene?
[ "A) 4", "B) 3", "C) 0", "D) 5" ]
B) 3
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'laundry machine' are present in this scene?
[ "A) 0", "B) 2", "C) 3", "D) 5" ]
B) 2
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'bathtub' are present in this scene?
[ "A) 0", "B) 4", "C) 2", "D) 1" ]
D) 1
[]
Holistic_Aggregation
Habitat_Object_Counting
Based on the combined exploration in all 3 videos, how many distinct instances of 'door' are present in this scene?
[ "A) 5", "B) 4", "C) 7", "D) 6" ]
B) 4
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the toilet paper dispenser, box of tissues, mirror> to Region 2 <room with the couch, ceiling light fixture connection, door knob>?
[ "A) Region 1 <room with the toilet paper dispenser, box of tissues, mirror> -> room with the stairs, staircase handrail, ceiling light fixture connection -> Region 2 <room with the couch, ceiling light fixture connection, door knob>", "B) Region 1 <room with the toilet paper dispenser, box of tissues, mirror> -> ...
D) Region 1 <room with the toilet paper dispenser, box of tissues, mirror> -> room with the stairs, staircase handrail, ceiling light fixture connection -> room with the nightstand, bed, clothes hanger -> Region 2 <room with the couch, ceiling light fixture connection, door knob>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the bath faucet, bathtub, bath wall> to Region 2 <room with the curtain rod, flowerpot, wall clock>?
[ "A) Region 1 <room with the bath faucet, bathtub, bath wall> -> Region 2 <room with the curtain rod, flowerpot, wall clock>", "B) Region 1 <room with the bath faucet, bathtub, bath wall> -> room with the casket, bed, ceiling fan -> room with the bag, storage shelving, clothes container -> Region 2 <room with the ...
C) Region 1 <room with the bath faucet, bathtub, bath wall> -> room with the bag, storage shelving, clothes container -> room with the casket, bed, ceiling fan -> Region 2 <room with the curtain rod, flowerpot, wall clock>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the stairs, staircase handrail, door knob> to Region 2 <room with the cabinet, couch, door knob>?
[ "A) Region 1 <room with the stairs, staircase handrail, door knob> -> room with the carpet, dresser, tray -> room with the clothes hanger, pillow, closet door -> Region 2 <room with the cabinet, couch, door knob>", "B) Region 1 <room with the stairs, staircase handrail, door knob> -> Region 2 <room with the cabin...
D) Region 1 <room with the stairs, staircase handrail, door knob> -> room with the clothes hanger, pillow, closet door -> Region 2 <room with the cabinet, couch, door knob>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the carpet, dresser, tray> to Region 2 <room with the cabinet, couch, door knob>?
[ "A) Region 1 <room with the carpet, dresser, tray> -> room with the closet door, bed, clothes hanger -> room with the stairs, staircase handrail, door knob -> Region 2 <room with the cabinet, couch, door knob>", "B) Region 1 <room with the carpet, dresser, tray> -> room with the stairs, staircase handrail, door k...
D) Region 1 <room with the carpet, dresser, tray> -> room with the stairs, staircase handrail, door knob -> room with the closet door, bed, clothes hanger -> Region 2 <room with the cabinet, couch, door knob>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the mirror, towel bar, washbasin counter> to Region 2 <room with the cabinet, couch, ceiling light fixture connection>?
[ "A) Region 1 <room with the mirror, towel bar, washbasin counter> -> room with the stairs, staircase handrail, ceiling light fixture connection -> room with the bed, clothes hanger, pillow -> Region 2 <room with the cabinet, couch, ceiling light fixture connection>", "B) Region 1 <room with the mirror, towel bar,...
A) Region 1 <room with the mirror, towel bar, washbasin counter> -> room with the stairs, staircase handrail, ceiling light fixture connection -> room with the bed, clothes hanger, pillow -> Region 2 <room with the cabinet, couch, ceiling light fixture connection>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the mirror, towel bar, washbasin counter> to Region 2 <room with the bed, clothes hanger, pillow>?
[ "A) Region 1 <room with the mirror, towel bar, washbasin counter> -> room with the stairs, staircase handrail, ceiling light fixture connection -> Region 2 <room with the bed, clothes hanger, pillow>", "B) Region 1 <room with the mirror, towel bar, washbasin counter> -> Region 2 <room with the bed, clothes hanger...
A) Region 1 <room with the mirror, towel bar, washbasin counter> -> room with the stairs, staircase handrail, ceiling light fixture connection -> Region 2 <room with the bed, clothes hanger, pillow>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the carpet, dresser, tray> to Region 2 <room with the cabinet, couch, door knob>?
[ "A) Region 1 <room with the carpet, dresser, tray> -> room with the clothes hanger, pillow, closet door -> Region 2 <room with the cabinet, couch, door knob>", "B) Region 1 <room with the carpet, dresser, tray> -> room with the stairs, staircase handrail, door knob -> Region 2 <room with the cabinet, couch, door ...
D) Region 1 <room with the carpet, dresser, tray> -> room with the stairs, staircase handrail, door knob -> room with the clothes hanger, pillow, closet door -> Region 2 <room with the cabinet, couch, door knob>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the air conditioner, armchair, bed> to Region 2 <room with the island, bar chair, casket>?
[ "A) None", "B) Region 1 <room with the air conditioner, armchair, bed> -> room with the support beam, smoke detector, washing machine -> Region 2 <room with the island, bar chair, casket>", "C) Region 1 <room with the air conditioner, armchair, bed> -> room with the curtain rod, flowerpot, wall clock -> room wi...
C) Region 1 <room with the air conditioner, armchair, bed> -> room with the curtain rod, flowerpot, wall clock -> room with the support beam, smoke detector, washing machine -> Region 2 <room with the island, bar chair, casket>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the bag, storage shelving, clothes container> to Region 2 <room with the curtain rod, flowerpot, wall clock>?
[ "A) Region 1 <room with the bag, storage shelving, clothes container> -> Region 2 <room with the curtain rod, flowerpot, wall clock>", "B) Region 1 <room with the bag, storage shelving, clothes container> -> room with the bath faucet, bathtub, bath wall -> Region 2 <room with the curtain rod, flowerpot, wall cloc...
D) Region 1 <room with the bag, storage shelving, clothes container> -> room with the casket, bed, ceiling fan -> Region 2 <room with the curtain rod, flowerpot, wall clock>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the nightstand, closet door, bed> to Region 2 <room with the nightstand, closet door, bed>?
[ "A) Region 1 <room with the nightstand, closet door, bed> -> room with the staircase handrail, stairs, ceiling light fixture connection -> room with the cabinet, couch, door knob -> Region 2 <room with the nightstand, closet door, bed>", "B) Region 1 <room with the nightstand, closet door, bed> -> room with the s...
C) Region 1 <room with the nightstand, closet door, bed> -> room with the cabinet, couch, door knob -> Region 2 <room with the nightstand, closet door, bed>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the stairs, staircase handrail, ceiling light fixture connection> to Region 2 <room with the cabinet, couch, ceiling light fixture connection>?
[ "A) Region 1 <room with the stairs, staircase handrail, ceiling light fixture connection> -> room with the bed, clothes hanger, pillow -> room with the mirror, towel bar, washbasin counter -> Region 2 <room with the cabinet, couch, ceiling light fixture connection>", "B) Region 1 <room with the stairs, staircase ...
D) Region 1 <room with the stairs, staircase handrail, ceiling light fixture connection> -> room with the bed, clothes hanger, pillow -> Region 2 <room with the cabinet, couch, ceiling light fixture connection>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the bag, storage shelving, hanging clothes> to Region 2 <room with the curtain rod, flowerpot, wall clock>?
[ "A) Region 1 <room with the bag, storage shelving, hanging clothes> -> room with the casket, bed, sliding door -> room with the bath faucet, bathtub, bath wall -> Region 2 <room with the curtain rod, flowerpot, wall clock>", "B) Region 1 <room with the bag, storage shelving, hanging clothes> -> room with the cask...
B) Region 1 <room with the bag, storage shelving, hanging clothes> -> room with the casket, bed, sliding door -> Region 2 <room with the curtain rod, flowerpot, wall clock>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the bath faucet, bathtub, bath wall> to Region 2 <room with the curtain rod, flowerpot, wall clock>?
[ "A) Region 1 <room with the bath faucet, bathtub, bath wall> -> room with the bag, storage shelving, hanging clothes -> room with the casket, bed, sliding door -> Region 2 <room with the curtain rod, flowerpot, wall clock>", "B) Region 1 <room with the bath faucet, bathtub, bath wall> -> room with the bag, storag...
A) Region 1 <room with the bath faucet, bathtub, bath wall> -> room with the bag, storage shelving, hanging clothes -> room with the casket, bed, sliding door -> Region 2 <room with the curtain rod, flowerpot, wall clock>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the carpet, dresser, tray> to Region 2 <room with the mirror, toilet, towel bar>?
[ "A) Region 1 <room with the carpet, dresser, tray> -> room with the cabinet, couch, door knob -> Region 2 <room with the mirror, toilet, towel bar>", "B) Region 1 <room with the carpet, dresser, tray> -> room with the stairs, staircase handrail, ceiling light fixture connection -> Region 2 <room with the mirror, ...
B) Region 1 <room with the carpet, dresser, tray> -> room with the stairs, staircase handrail, ceiling light fixture connection -> Region 2 <room with the mirror, toilet, towel bar>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the carpet, dresser, tray> to Region 2 <room with the closet door, bed, clothes hanger>?
[ "A) Region 1 <room with the carpet, dresser, tray> -> room with the cabinet, couch, door knob -> Region 2 <room with the closet door, bed, clothes hanger>", "B) Region 1 <room with the carpet, dresser, tray> -> room with the cabinet, couch, door knob -> room with the stairs, staircase handrail, door knob -> Regio...
D) Region 1 <room with the carpet, dresser, tray> -> room with the stairs, staircase handrail, door knob -> Region 2 <room with the closet door, bed, clothes hanger>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the staircase handrail, stairs, ceiling light fixture connection> to Region 2 <room with the nightstand, closet door, bed>?
[ "A) Region 1 <room with the staircase handrail, stairs, ceiling light fixture connection> -> room with the cabinet, couch, door knob -> Region 2 <room with the nightstand, closet door, bed>", "B) Region 1 <room with the staircase handrail, stairs, ceiling light fixture connection> -> Region 2 <room with the night...
D) Region 1 <room with the staircase handrail, stairs, ceiling light fixture connection> -> room with the nightstand, closet door, bed -> room with the cabinet, couch, door knob -> Region 2 <room with the nightstand, closet door, bed>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the bath faucet, bathtub, bath wall> to Region 2 <room with the casket, bed, ceiling fan>?
[ "A) Region 1 <room with the bath faucet, bathtub, bath wall> -> room with the curtain rod, flowerpot, wall clock -> room with the bag, storage shelving, clothes container -> Region 2 <room with the casket, bed, ceiling fan>", "B) Region 1 <room with the bath faucet, bathtub, bath wall> -> room with the bag, stora...
B) Region 1 <room with the bath faucet, bathtub, bath wall> -> room with the bag, storage shelving, clothes container -> Region 2 <room with the casket, bed, ceiling fan>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the carpet, dresser, tray> to Region 2 <room with the clothes hanger, pillow, closet door>?
[ "A) Region 1 <room with the carpet, dresser, tray> -> room with the stairs, staircase handrail, door knob -> room with the cabinet, couch, door knob -> Region 2 <room with the clothes hanger, pillow, closet door>", "B) Region 1 <room with the carpet, dresser, tray> -> room with the cabinet, couch, door knob -> Re...
C) Region 1 <room with the carpet, dresser, tray> -> room with the stairs, staircase handrail, door knob -> Region 2 <room with the clothes hanger, pillow, closet door>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the carpet, dresser, tray> to Region 2 <room with the stairs, staircase handrail, ceiling light fixture connection>?
[ "A) Region 1 <room with the carpet, dresser, tray> -> room with the mirror, toilet, towel bar -> Region 2 <room with the stairs, staircase handrail, ceiling light fixture connection>", "B) Region 1 <room with the carpet, dresser, tray> -> Region 2 <room with the stairs, staircase handrail, ceiling light fixture c...
C) Region 1 <room with the carpet, dresser, tray> -> room with the stairs, staircase handrail, ceiling light fixture connection -> room with the mirror, toilet, towel bar -> Region 2 <room with the stairs, staircase handrail, ceiling light fixture connection>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the staircase handrail, stairs, ceiling light fixture connection> to Region 2 <room with the cabinet, couch, door knob>?
[ "A) Region 1 <room with the staircase handrail, stairs, ceiling light fixture connection> -> Region 2 <room with the cabinet, couch, door knob>", "B) Region 1 <room with the staircase handrail, stairs, ceiling light fixture connection> -> room with the carpet, tray, rack -> room with the nightstand, closet door, ...
C) Region 1 <room with the staircase handrail, stairs, ceiling light fixture connection> -> room with the nightstand, closet door, bed -> Region 2 <room with the cabinet, couch, door knob>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the stairs, staircase handrail, ceiling light fixture connection> to Region 2 <room with the stairs, staircase handrail, ceiling light fixture connection>?
[ "A) Region 1 <room with the stairs, staircase handrail, ceiling light fixture connection> -> room with the mirror, toilet, towel bar -> Region 2 <room with the stairs, staircase handrail, ceiling light fixture connection>", "B) Region 1 <room with the stairs, staircase handrail, ceiling light fixture connection> ...
A) Region 1 <room with the stairs, staircase handrail, ceiling light fixture connection> -> room with the mirror, toilet, towel bar -> Region 2 <room with the stairs, staircase handrail, ceiling light fixture connection>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the stairs, staircase handrail, ceiling light fixture connection> to Region 2 <room with the couch, ceiling light fixture connection, door knob>?
[ "A) Region 1 <room with the stairs, staircase handrail, ceiling light fixture connection> -> room with the toilet paper dispenser, box of tissues, mirror -> room with the nightstand, bed, clothes hanger -> Region 2 <room with the couch, ceiling light fixture connection, door knob>", "B) Region 1 <room with the st...
D) Region 1 <room with the stairs, staircase handrail, ceiling light fixture connection> -> room with the nightstand, bed, clothes hanger -> Region 2 <room with the couch, ceiling light fixture connection, door knob>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the bath faucet, bathtub, bath wall> to Region 2 <room with the casket, bed, sliding door>?
[ "A) Region 1 <room with the bath faucet, bathtub, bath wall> -> room with the bag, storage shelving, hanging clothes -> Region 2 <room with the casket, bed, sliding door>", "B) Region 1 <room with the bath faucet, bathtub, bath wall> -> room with the curtain rod, flowerpot, wall clock -> Region 2 <room with the c...
A) Region 1 <room with the bath faucet, bathtub, bath wall> -> room with the bag, storage shelving, hanging clothes -> Region 2 <room with the casket, bed, sliding door>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the stairs, staircase handrail, door knob> to Region 2 <room with the cabinet, couch, door knob>?
[ "A) Region 1 <room with the stairs, staircase handrail, door knob> -> room with the carpet, dresser, tray -> room with the closet door, bed, clothes hanger -> Region 2 <room with the cabinet, couch, door knob>", "B) Region 1 <room with the stairs, staircase handrail, door knob> -> room with the closet door, bed, ...
B) Region 1 <room with the stairs, staircase handrail, door knob> -> room with the closet door, bed, clothes hanger -> Region 2 <room with the cabinet, couch, door knob>
[]
Holistic_Aggregation
Habitat_Route_Planning
Based on the spatial layout shown across the videos, what is the shortest possible path to travel from Region 1 <room with the toilet paper dispenser, box of tissues, mirror> to Region 2 <room with the nightstand, bed, clothes hanger>?
[ "A) Region 1 <room with the toilet paper dispenser, box of tissues, mirror> -> room with the couch, ceiling light fixture connection, door knob -> Region 2 <room with the nightstand, bed, clothes hanger>", "B) Region 1 <room with the toilet paper dispenser, box of tissues, mirror> -> Region 2 <room with the night...
D) Region 1 <room with the toilet paper dispenser, box of tissues, mirror> -> room with the stairs, staircase handrail, ceiling light fixture connection -> Region 2 <room with the nightstand, bed, clothes hanger>
[]
End of preview. Expand in Data Studio

TinySYNCR

Tiny preview subset of SYNCR with 25 samples per task.

from datasets import load_dataset

ds = load_dataset(
    "CrossVideoReasoning/TinySYNCR",
    split="test"
)

Each row contains:

  • category
  • task
  • question
  • options
  • answer
  • two or more video columns

License

The SYNCR dataset (including video assets and annotations) is provided under the Creative Commons Attribution 4.0 International (CC-BY 4.0) License.

The code for benchmark generation and evaluation is provided separately under the MIT License in the accompanying GitHub repository.

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