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The dataset generation failed
Error code: DatasetGenerationError
Exception: CastError
Message: Couldn't cast
id: int64
prompt: string
completion: string
gt: string
difficulty: double
solutions: list<item: string>
child 0, item: string
to
{'prompt': Value('string'), 'gt': Value('string'), 'difficulty': Value('float64'), 'completion': Value('string'), 'solutions': List(Value('string'))}
because column names don't match
Traceback: Traceback (most recent call last):
File "/usr/local/lib/python3.12/site-packages/datasets/builder.py", line 1872, in _prepare_split_single
for key, table in generator:
^^^^^^^^^
File "/usr/local/lib/python3.12/site-packages/datasets/packaged_modules/json/json.py", line 289, in _generate_tables
self._cast_table(pa_table, json_field_paths=json_field_paths),
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
File "/usr/local/lib/python3.12/site-packages/datasets/packaged_modules/json/json.py", line 124, in _cast_table
pa_table = table_cast(pa_table, self.info.features.arrow_schema)
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
File "/usr/local/lib/python3.12/site-packages/datasets/table.py", line 2272, in table_cast
return cast_table_to_schema(table, schema)
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
File "/usr/local/lib/python3.12/site-packages/datasets/table.py", line 2218, in cast_table_to_schema
raise CastError(
datasets.table.CastError: Couldn't cast
id: int64
prompt: string
completion: string
gt: string
difficulty: double
solutions: list<item: string>
child 0, item: string
to
{'prompt': Value('string'), 'gt': Value('string'), 'difficulty': Value('float64'), 'completion': Value('string'), 'solutions': List(Value('string'))}
because column names don't match
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 1347, 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 980, in convert_to_parquet
builder.download_and_prepare(
File "/usr/local/lib/python3.12/site-packages/datasets/builder.py", line 884, in download_and_prepare
self._download_and_prepare(
File "/usr/local/lib/python3.12/site-packages/datasets/builder.py", line 947, in _download_and_prepare
self._prepare_split(split_generator, **prepare_split_kwargs)
File "/usr/local/lib/python3.12/site-packages/datasets/builder.py", line 1739, 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 1922, 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.
prompt string | gt string | difficulty float64 | completion string | solutions list |
|---|---|---|---|---|
<|begin▁of▁sentence|><|User|>Evaluate the limit: $$\lim_{(x, y) \to (1, 2)} \frac{(x-1)(y-2)-xy+3}{x^2-2x+y^2-4}$$<|Assistant|><think>
| -1 | 5 | Okay, so I need to evaluate the limit as (x, y) approaches (1, 2) of this function: [(x-1)(y-2) - xy + 3] divided by [x² - 2x + y² - 4]. Hmm, let me write that down again to make sure I have it right.
The numerator is (x - 1)(y - 2) minus xy plus 3, and the denominator is x squared minus 2x plus y squared minus 4. Al... | [
"Okay, so I need to evaluate the limit as (x, y) approaches (1, 2) of this function: [(x-1)(y-2) - xy + 3] divided by [x² - 2x + y² - 4]. Hmm, let me write that down again to make sure I have it right. \n\nThe numerator is (x - 1)(y - 2) minus xy plus 3, and the denominator is x squared minus 2x plus y squared minu... |
<|begin▁of▁sentence|><|User|>Calculate the minimum number of check bits required to create a correctable code with a minimum distance of 4 for a list of 10 key words.<|Assistant|><think>
| 4 | 5.5 | Okay, so I need to figure out the minimum number of check bits required to create a correctable code with a minimum distance of 4 for a list of 10 key words. Let me start by recalling some coding theory basics.
First, I remember that the minimum distance of a code determines its error detection and correction capabili... | [
"Okay, so I need to figure out the minimum number of check bits required to create a correctable code with a minimum distance of 4 for a list of 10 key words. Let me start by recalling some coding theory basics.\n\nFirst, I remember that the minimum distance of a code determines its error detection and correction c... |
"<|begin▁of▁sentence|><|User|>The polynomial $p(x)$ satisfies $p(1) = 210$ and\n\\[(x + (...TRUNCATED) | 336 | 5 | "Okay, let's try to solve this problem step by step. The polynomial \\( p(x) \\) satisfies two condi(...TRUNCATED) | ["Okay, let's try to solve this problem step by step. The polynomial \\( p(x) \\) satisfies two cond(...TRUNCATED) |
"<|begin▁of▁sentence|><|User|>A circular helix in $xyz$-space is defined by the parametr(...TRUNCATED) | \sqrt{51} | 5 | "Okay, let's see. I need to find the distance from a point on the helix to the origin, given that th(...TRUNCATED) | ["Okay, let's see. I need to find the distance from a point on the helix to the origin, given that t(...TRUNCATED) |
"<|begin▁of▁sentence|><|User|>For each integer $k$, determine the smallest integer $n$ s(...TRUNCATED) | 100 + k | 6 | "Okay, let's try to tackle this problem. So, the question is: For each integer k, determine the smal(...TRUNCATED) | ["Okay, let's try to tackle this problem. So, the question is: For each integer k, determine the sma(...TRUNCATED) |
"<|begin▁of▁sentence|><|User|>Evaluate the integral \\( \\int_{\\gamma} \\frac{ |dz| }{z(...TRUNCATED) | 0 | 7 | "Okay, so I need to evaluate the integral \\( \\int_{\\gamma} \\frac{ |dz| }{z^2} \\) where \\( \\ga(...TRUNCATED) | ["Okay, so I need to evaluate the integral \\( \\int_{\\gamma} \\frac{ |dz| }{z^2} \\) where \\( \\g(...TRUNCATED) |
"<|begin▁of▁sentence|><|User|>Find the limit of the sequence \\( \\frac{n!}{n^{n\\ln(n)}(...TRUNCATED) | 0 | 7.5 | "Okay, so I need to find the limit of the sequence \\( \\frac{n!}{n^{n \\ln(n)}} \\) as \\( n \\) ap(...TRUNCATED) | ["Okay, so I need to find the limit of the sequence \\( \\frac{n!}{n^{n \\ln(n)}} \\) as \\( n \\) a(...TRUNCATED) |
"<|begin▁of▁sentence|><|User|>Determine all values of $m$ such that the equation \\(3^{x(...TRUNCATED) | C | 6 | "Okay, let's tackle this problem step by step. The equation given is:\n\n\\[ 3^{x^2 + 2mx + 4m - 3} (...TRUNCATED) | ["Okay, let's tackle this problem step by step. The equation given is:\n\n\\[ 3^{x^2 + 2mx + 4m - 3}(...TRUNCATED) |
"<|begin▁of▁sentence|><|User|>Given that \\(a+b+c+d=0\\) and \\(a^2+b^2+c^2+d^2=1\\), fi(...TRUNCATED) | 0 | 6 | "Okay, so I need to find the maximum value of the expression \\( ab + bc + cd + da \\) given that \\(...TRUNCATED) | ["Okay, so I need to find the maximum value of the expression \\( ab + bc + cd + da \\) given that \(...TRUNCATED) |
"<|begin▁of▁sentence|><|User|>Calculate the flux of the vector field \\( \\bar{F} = \\la(...TRUNCATED) | -\dfrac{1}{6} | 5 | "Okay, let's try to figure out how to calculate the flux of the vector field \\( \\bar{F} = \\langle(...TRUNCATED) | ["Okay, let's try to figure out how to calculate the flux of the vector field \\( \\bar{F} = \\langl(...TRUNCATED) |
End of preview.