task
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60 values
visual_input_component
stringclasses
21 values
source
stringclasses
64 values
options
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12
4.46k
question
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17
1.33k
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21.8k
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output
stringclasses
10 values
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_35_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_35_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_36_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_36_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_37_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_37_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_38_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_38_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_39_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_39_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_40_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_40_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_41_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_41_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_42_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_42_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_43_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_43_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_44_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_44_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_45_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_45_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_46_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_46_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_47_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_47_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_48_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_48_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_49_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_49_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_50_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_50_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_51_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_51_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_52_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_52_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_53_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_53_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_54_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_54_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_55_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_55_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_56_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_56_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_57_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_57_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_58_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_58_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_59_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_59_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_60_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_60_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_61_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_61_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_62_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_62_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_63_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_63_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_64_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_64_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_65_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_65_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_66_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_66_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_67_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_67_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_68_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_68_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_69_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_69_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_70_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_70_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_71_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_71_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_72_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_72_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_73_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_73_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_74_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_74_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_75_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_75_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_76_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_76_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_77_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_77_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_78_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_78_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_79_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_79_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_80_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_80_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_81_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_81_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_82_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_82_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_83_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_83_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_84_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_84_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_85_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_85_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_86_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_86_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_87_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_87_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_88_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_88_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_89_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_89_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_90_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_90_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_91_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_91_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_92_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_92_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_93_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_93_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_94_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_94_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_95_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_95_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_96_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_96_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_97_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_97_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_98_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_98_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_99_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_99_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_100_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_100_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_101_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_101_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_102_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_102_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_103_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_103_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_104_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_104_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_105_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_105_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_106_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_106_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_107_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_107_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_108_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_108_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_109_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_109_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_110_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_110_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_111_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_111_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_112_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_112_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_113_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_113_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_114_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_114_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_115_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_115_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_116_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_116_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_117_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_117_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_118_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_118_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_119_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_119_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_120_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_120_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_121_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_121_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_122_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_122_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_123_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_123_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_124_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_124_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_125_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_125_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_126_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_126_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_127_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_127_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_128_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_128_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_129_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_129_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_130_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_130_1.jpg" ]
A
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_131_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_131_1.jpg" ]
B
Multiview_reasoning
natural image
BLINK_MVR
A: left B: right
The images are frames from a video. The first image is from the beginning of the video and the second image is from the end. Is the camera moving left or right when shooting the video?
Your task is centered on evaluating the multi-view reasoning capabilities of models. The objective is to deduce the relative camera motion based on two images of an object captured from different viewpoints. Select from the following choices. A: left B: right
[ "./3D-spatial/Multiview_reasoning/Multiview_reasoning_132_0.jpg", "./3D-spatial/Multiview_reasoning/Multiview_reasoning_132_1.jpg" ]
B
threeD_Depth_Estimation
3d image
SCANNET_threed_depth_estimation
A: The 3th image B: The 4th image C: The 5th image D: The 6th image
Given the first color image view of the scene with the corresponding camera pose, i.e., rotation matrix: [[-0.891251, 0.378307, -0.25011], [0.443048, 0.608538, -0.658323], [-0.096846, -0.697542, -0.709969]] and translation vector: [4.935522, 3.588868, 1.45033], and the second color image view of the same scene with the corresponding camera pose, i.e., rotation matrix: [[-0.887006, 0.383874, -0.256633], [0.452131, 0.60913, -0.651566], [-0.093796, -0.693975, -0.713864]] and translation vector: [4.940225, 3.582454, 1.45688], please estimate the depth map for the first view of the RGB image. The provided camera poses represent the the transformation from the camera coordinate system to the world coordinate system.
Your task is to estimate the depth map for a color image based on two color images captured from two viewpoints, along with the corresponding camera poses.The input images are the first 2 images Select from the following choices. A: The 3th image B: The 4th image C: The 5th image D: The 6th image
[ "./3D-spatial/threeD_Depth_Estimation/threeD_Depth_Estimation_0_0.jpg", "./3D-spatial/threeD_Depth_Estimation/threeD_Depth_Estimation_0_1.jpg", "./3D-spatial/threeD_Depth_Estimation/threeD_Depth_Estimation_0_2.png", "./3D-spatial/threeD_Depth_Estimation/threeD_Depth_Estimation_0_3.png", "./3D-spatial/threeD_Depth_Estimation/threeD_Depth_Estimation_0_4.png", "./3D-spatial/threeD_Depth_Estimation/threeD_Depth_Estimation_0_5.png" ]
C
threeD_Depth_Estimation
3d image
SCANNET_threed_depth_estimation
A: The 3th image B: The 4th image C: The 5th image D: The 6th image
Given the first color image view of the scene with the corresponding camera pose, i.e., rotation matrix: [[-0.997112, 0.02462, 0.071841], [-0.04661, 0.548461, -0.834876], [-0.059957, -0.835814, -0.545729]] and translation vector: [4.834615, 3.436689, 1.398379], and the second color image view of the same scene with the corresponding camera pose, i.e., rotation matrix: [[-0.998397, 0.025746, 0.050402], [-0.028149, 0.546702, -0.836854], [-0.0491, -0.836932, -0.545101]] and translation vector: [4.839047, 3.434593, 1.400064], please estimate the depth map for the first view of the RGB image. The provided camera poses represent the the transformation from the camera coordinate system to the world coordinate system.
Your task is to estimate the depth map for a color image based on two color images captured from two viewpoints, along with the corresponding camera poses.The input images are the first 2 images Select from the following choices. A: The 3th image B: The 4th image C: The 5th image D: The 6th image
[ "./3D-spatial/threeD_Depth_Estimation/threeD_Depth_Estimation_1_0.jpg", "./3D-spatial/threeD_Depth_Estimation/threeD_Depth_Estimation_1_1.jpg", "./3D-spatial/threeD_Depth_Estimation/threeD_Depth_Estimation_1_2.png", "./3D-spatial/threeD_Depth_Estimation/threeD_Depth_Estimation_1_3.png", "./3D-spatial/threeD_Depth_Estimation/threeD_Depth_Estimation_1_4.png", "./3D-spatial/threeD_Depth_Estimation/threeD_Depth_Estimation_1_5.png" ]
C