messages list | ground_truth list | dataset string | id string | difficulty int64 | timestamps list | scene_config dict | tolerance float64 | prompt_setting string |
|---|---|---|---|---|---|---|---|---|
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[776.88, 744.58]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[803.76, 739.16]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[830.71, 733.73]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[857.59, 728.31]]) <= 50.0",
... | ballsim | AF_0_26 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.2,
"color": [
69,
109,
239
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"rot... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[777.98, 737.11]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[805.96, 724.22]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[834.01, 711.3]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[861.98, 698.41]]) <= 50.0",
"... | ballsim | AF_0_24 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.12,
"color": [
203,
104,
249
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"r... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[772.75, 754.39]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[795.51, 758.79]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[818.32, 763.19]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[841.07, 767.59]]) <= 50.0",
... | ballsim | AF_0_20 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.1,
"color": [
200,
83,
172
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"rot... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[727.08, 782.42]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[704.15, 814.84]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[681.17, 847.35]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[694.82, 877.25]]) <= 50.0",
... | ballsim | AF_0_12 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.17,
"color": [
66,
142,
130
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"ro... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[749.76, 778.91]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[749.51, 807.81]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[749.27, 836.79]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[749.02, 865.7]]) <= 50.0",
"... | ballsim | AF_0_5 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.16,
"color": [
170,
221,
147
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"r... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[787.87, 746.02]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[825.73, 742.04]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[863.69, 738.05]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[901.56, 734.07]]) <= 50.0",
... | ballsim | AF_0_46 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.11,
"color": [
112,
52,
255
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"ro... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[777.64, 767.29]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[805.27, 784.57]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[832.98, 801.9]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[837.94, 779.92]]) <= 50.0",
"... | ballsim | AF_0_27 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.16,
"color": [
113,
125,
205
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"r... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[772.78, 747.39]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[795.56, 744.78]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[818.39, 742.16]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[841.17, 739.54]]) <= 50.0",
... | ballsim | AF_0_10 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.12,
"color": [
194,
63,
123
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"ro... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[766.5, 777.91]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[783.01, 805.81]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[799.55, 833.79]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[816.06, 861.69]]) <= 50.0",
"... | ballsim | AF_0_30 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.19,
"color": [
204,
88,
190
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"ro... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[727.05, 734.03]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[704.1, 718.07]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[681.09, 702.06]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[696.24, 686.09]]) <= 50.0",
"... | ballsim | AF_0_17 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.19,
"color": [
239,
59,
135
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"ro... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[720.39, 752.47]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[690.77, 754.93]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[693.59, 757.4]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[722.74, 759.87]]) <= 50.0",
"... | ballsim | AF_0_32 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.19,
"color": [
67,
214,
196
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"ro... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[770.73, 758.4]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[791.46, 766.8]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[812.23, 775.22]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[832.96, 783.61]]) <= 50.0",
"a... | ballsim | AF_0_22 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.13,
"color": [
81,
159,
82
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"rot... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[767.75, 728.52]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[785.5, 707.03]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[803.29, 685.49]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[821.04, 664.01]]) <= 50.0",
"... | ballsim | AF_0_13 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.15,
"color": [
198,
223,
91
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"ro... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[769.75, 758.42]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[789.5, 766.85]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[809.3, 775.29]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[829.05, 783.71]]) <= 50.0",
"a... | ballsim | AF_0_4 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.16,
"color": [
182,
202,
217
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"r... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[773.39, 758.54]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[796.78, 767.09]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[820.22, 775.66]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[843.61, 784.2]]) <= 50.0",
"... | ballsim | AF_0_40 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.14,
"color": [
87,
199,
217
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"ro... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[766.82, 774.88]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[783.64, 799.76]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[778.56, 802.75]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[754.68, 786.93]]) <= 50.0",
... | ballsim | AF_0_39 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.18,
"color": [
134,
133,
242
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"r... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[769.36, 726.88]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[788.72, 703.76]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[808.13, 680.58]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[827.49, 657.46]]) <= 50.0",
... | ballsim | AF_0_11 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.15,
"color": [
234,
177,
51
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"ro... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[762.74, 717.9]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[775.49, 685.79]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[778.16, 671.09]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[756.75, 698.09]]) <= 50.0",
"... | ballsim | AF_0_25 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.16,
"color": [
171,
138,
152
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"r... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[730.64, 723.66]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[711.28, 697.31]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[691.87, 670.91]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[672.89, 644.94]]) <= 50.0",
... | ballsim | AF_0_36 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.19,
"color": [
71,
145,
152
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"ro... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[735.38, 739.64]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[754.11, 720.71]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[773.39, 701.67]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[792.63, 682.67]]) <= 50.0",
... | ballsim | AF_0_1 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.12,
"color": [
138,
195,
187
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"r... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[742.46, 719.7]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[734.91, 689.4]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[752.41, 684.09]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[781.61, 690.54]]) <= 50.0",
"a... | ballsim | AF_0_44 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.12,
"color": [
65,
171,
101
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"ro... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[774.17, 737.06]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[798.34, 724.12]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[822.57, 711.15]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[846.74, 698.21]]) <= 50.0",
... | ballsim | AF_0_19 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.11,
"color": [
209,
186,
72
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"ro... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[718.51, 750.54]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[687.01, 751.07]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[655.44, 751.61]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[623.94, 752.15]]) <= 50.0",
... | ballsim | AF_0_34 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.16,
"color": [
117,
141,
248
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"r... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[767.07, 767.16]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[784.13, 784.33]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[801.24, 801.53]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[818.3, 818.7]]) <= 50.0",
"a... | ballsim | AF_0_49 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.16,
"color": [
196,
209,
86
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"ro... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[764.01, 728.76]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[778.03, 707.52]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[792.08, 686.23]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[790.82, 691.44]]) <= 50.0",
... | ballsim | AF_0_42 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.15,
"color": [
136,
208,
241
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"r... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[716.33, 741.33]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[682.67, 732.67]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[666.09, 723.98]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[699.73, 715.31]]) <= 50.0",
... | ballsim | AF_0_31 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.11,
"color": [
146,
240,
104
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"r... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[776.0, 749.22]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[802.0, 748.44]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[828.07, 747.65]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[839.02, 761.92]]) <= 50.0",
"a... | ballsim | AF_0_29 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.11,
"color": [
130,
86,
51
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"rot... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[773.83, 751.12]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[797.66, 752.25]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[821.54, 753.37]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[845.37, 754.49]]) <= 50.0",
... | ballsim | AF_0_21 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.18,
"color": [
97,
250,
119
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"ro... | 50 | function |
[
{
"content": "## Polygon Dynamics Prediction\nIn this task, you will implement a single function predict_position(t) that computes the 2D positions of all balls at an arbitrary future time t under idealized mechanics. The function parses the scene configuration (containers, balls, and physics/meta), reconstruct... | [
"assert check_distance(predict_position(0.10), [[769.6, 721.92]]) <= 50.0",
"assert check_distance(predict_position(0.20), [[789.21, 693.85]]) <= 50.0",
"assert check_distance(predict_position(0.30), [[808.86, 665.7]]) <= 50.0",
"assert check_distance(predict_position(0.40), [[822.3, 643.8]]) <= 50.0",
"ass... | ballsim | AF_0_23 | 0 | [
0.1,
0.2,
0.3,
0.4,
0.5,
0.6,
0.7,
0.8,
0.9,
1,
1.1,
1.2,
1.3,
1.4,
1.5
] | {
"balls": [
{
"angular_time_variation": false,
"angular_velocity": 0.19,
"color": [
54,
82,
153
],
"density": 1,
"inner_rotation_enabled": true,
"position": [
750,
750
],
"radius": 40,
"restitution": 1,
"rot... | 50 | function |
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