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The dataset generation failed
Error code: DatasetGenerationError
Exception: ArrowIndexError
Message: array slice would exceed array length
Traceback: Traceback (most recent call last):
File "/usr/local/lib/python3.12/site-packages/datasets/builder.py", line 1831, in _prepare_split_single
writer.write_table(table)
File "/usr/local/lib/python3.12/site-packages/datasets/arrow_writer.py", line 713, in write_table
pa_table = pa_table.combine_chunks()
^^^^^^^^^^^^^^^^^^^^^^^^^
File "pyarrow/table.pxi", line 4557, in pyarrow.lib.Table.combine_chunks
File "pyarrow/error.pxi", line 155, in pyarrow.lib.pyarrow_internal_check_status
File "pyarrow/error.pxi", line 92, in pyarrow.lib.check_status
pyarrow.lib.ArrowIndexError: array slice would exceed array length
The above exception was the direct cause of the following exception:
Traceback (most recent call last):
File "/src/services/worker/src/worker/job_runners/config/parquet_and_info.py", line 1455, in compute_config_parquet_and_info_response
parquet_operations = convert_to_parquet(builder)
^^^^^^^^^^^^^^^^^^^^^^^^^^^
File "/src/services/worker/src/worker/job_runners/config/parquet_and_info.py", line 1054, in convert_to_parquet
builder.download_and_prepare(
File "/usr/local/lib/python3.12/site-packages/datasets/builder.py", line 894, in download_and_prepare
self._download_and_prepare(
File "/usr/local/lib/python3.12/site-packages/datasets/builder.py", line 970, in _download_and_prepare
self._prepare_split(split_generator, **prepare_split_kwargs)
File "/usr/local/lib/python3.12/site-packages/datasets/builder.py", line 1702, in _prepare_split
for job_id, done, content in self._prepare_split_single(
^^^^^^^^^^^^^^^^^^^^^^^^^^^
File "/usr/local/lib/python3.12/site-packages/datasets/builder.py", line 1858, in _prepare_split_single
raise DatasetGenerationError("An error occurred while generating the dataset") from e
datasets.exceptions.DatasetGenerationError: An error occurred while generating the datasetNeed help to make the dataset viewer work? Make sure to review how to configure the dataset viewer, and open a discussion for direct support.
index
int64 | problem
string | full_response
dict | text_responses
list | confidences
list | is_correct
list | percentage_correct
float64 |
|---|---|---|---|---|---|---|
0
| "Every morning Aya goes for a $9$-kilometer-long walk and stops at a coffee shop afterwards. When sh(...TRUNCATED)
| {"id":"chatcmpl-b84f91ca9db3471e8bc56240373d43fc","choices":[{"finish_reason":"stop","index":0,"logp(...TRUNCATED)
| ["<tool_call>\nWe are given two scenarios involving Aya's walk and time spent at a coffee shop. Let'(...TRUNCATED)
|
[
1,
1,
1,
1,
1,
1,
1,
1
] |
[
true,
true,
true,
true,
true,
true,
true,
true
] | 1
|
1
| "Let $ABC$ be a triangle inscribed in circle $\\omega$. Let the tangents to $\\omega$ at $B$ and $C$(...TRUNCATED)
| {"id":"chatcmpl-e93ce5a950ea401f9f4f6582e58ac5cd","choices":[{"finish_reason":"length","index":0,"lo(...TRUNCATED)
| ["<tool_call>\nWe are given a triangle $ ABC $ inscribed in a circle $ \\omega $, with side lengths:(...TRUNCATED)
|
[
1,
null,
0.9,
null,
null,
null,
null
] |
[
false,
false,
false,
false,
false,
false,
false,
false
] | 0
|
2
| "Each vertex of a regular octagon is independently colored either red or blue with equal probability(...TRUNCATED)
| {"id":"chatcmpl-f420bbed56fc478b96ec758014437f79","choices":[{"finish_reason":"length","index":0,"lo(...TRUNCATED)
| ["<tool_call>\nWe are given a regular octagon, with each vertex independently colored red or blue wi(...TRUNCATED)
|
[
1,
null,
null
] |
[
false,
false,
false,
false,
false,
false,
false,
false
] | 0
|
3
| "Define $f(x)=|| x|-\\tfrac{1}{2}|$ and $g(x)=|| x|-\\tfrac{1}{4}|$. Find the number of intersection(...TRUNCATED)
| {"id":"chatcmpl-600210b5af644966b5f1b845a9dff03a","choices":[{"finish_reason":"length","index":0,"lo(...TRUNCATED)
| ["<tool_call>\nWe are given two functions:\n\n- $ f(x) = \\left| |x| - \\frac{1}{2} \\right| $\n- $ (...TRUNCATED)
|
[
null,
1,
null,
null,
1,
1,
1,
1
] |
[
false,
false,
false,
false,
false,
false,
false,
false
] | 0
|
4
| "Let $p$ be the least prime number for which there exists a positive integer $n$ such that $n^{4}+1$(...TRUNCATED)
| {"id":"chatcmpl-a1911f87f2e341c19e8c72e01db370b7","choices":[{"finish_reason":"stop","index":0,"logp(...TRUNCATED)
| ["<tool_call>\nWe are given that $ p $ is the **least prime** for which there exists a positive inte(...TRUNCATED)
|
[
1
] |
[
true,
false,
false,
true,
true,
false,
false,
false
] | 0.375
|
5
| "Let $ABCD$ be a tetrahedron such that $AB=CD= \\sqrt{41}$, $AC=BD= \\sqrt{80}$, and $BC=AD= \\sqrt{(...TRUNCATED)
| {"id":"chatcmpl-a1d806040e484ef3968ed215355e1e49","choices":[{"finish_reason":"stop","index":0,"logp(...TRUNCATED)
| ["<tool_call>\nWe are given a tetrahedron $ABCD$ with the following edge lengths:\n\n- $AB = CD = \\(...TRUNCATED)
|
[
1,
1,
1,
1,
1,
1,
1,
1
] |
[
true,
true,
false,
false,
true,
true,
false,
false
] | 0.5
|
6
| "Let $\\mathcal{B}$ be the set of rectangular boxes with surface area $54$ and volume $23$. Let $r$ (...TRUNCATED)
| {"id":"chatcmpl-2ba269cf26fa4b518d76cd744e02a1f4","choices":[{"finish_reason":"length","index":0,"lo(...TRUNCATED)
| ["<tool_call>\nWe are given:\n\n- A set $\\mathcal{B}$ of rectangular boxes (rectangular prisms) wit(...TRUNCATED)
|
[
0.8,
0.7,
null,
0.9,
0.95,
0.7,
0.95,
1
] |
[
false,
true,
true,
false,
true,
true,
true,
true
] | 0.75
|
7
| "There exist real numbers $x$ and $y$, both greater than 1, such that $\\log_x\\left(y^x\\right)=\\l(...TRUNCATED)
| {"id":"chatcmpl-27eba22a9dec425889652230fa2fc45c","choices":[{"finish_reason":"stop","index":0,"logp(...TRUNCATED)
| ["<tool_call>\nWe are given that there exist real numbers $ x $ and $ y $, both greater than 1, such(...TRUNCATED)
|
[
1,
1,
1,
1,
1,
1,
1
] |
[
true,
true,
false,
true,
true,
false,
true,
true
] | 0.75
|
8
| "Alice and Bob play the following game. A stack of $n$ tokens lies before them. The players take tur(...TRUNCATED)
| {"id":"chatcmpl-2b50dbeddd3c4534bfbba14d768e9d78","choices":[{"finish_reason":"stop","index":0,"logp(...TRUNCATED)
| ["<tool_call>\nWe are given a two-player game with a stack of $ n $ tokens. Players alternate turns,(...TRUNCATED)
|
[
1,
1,
1,
1,
1,
1,
1,
1
] |
[
true,
true,
true,
true,
true,
true,
true,
true
] | 1
|
9
| "Jen enters a lottery by picking $4$ distinct numbers from $S=\\{1,2,3,\\cdots,9,10\\}.$ $4$ numbers(...TRUNCATED)
| {"id":"chatcmpl-3a47eeb45ec74c94b240d607d56d080e","choices":[{"finish_reason":"stop","index":0,"logp(...TRUNCATED)
| ["<tool_call>\nWe are given a lottery scenario where:\n\n- Jen picks 4 distinct numbers from $ S = \(...TRUNCATED)
|
[
1,
1,
1,
1,
1,
1,
1,
1
] |
[
true,
true,
true,
true,
true,
true,
true,
true
] | 1
|
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