Datasets:
prompt_index int64 0 1.63k | response_index int64 0 7 | _unique_row_id int64 0 13k | instruction_seed stringlengths 17 8.16k | generation_prompt stringlengths 60 8.2k | generated_text stringlengths 1.89k 246k | generated_token_ids large listlengths 393 32.8k | generated_token_logprobs large listlengths 393 32.8k | generated_top_logprob_token_ids large listlengths 393 32.8k | generated_top_logprobs large listlengths 393 32.8k |
|---|---|---|---|---|---|---|---|---|---|
0 | 0 | 0 | "Suppose I have two free-particles $A,B$ whose positions evolve according to wave functions $\\psi_A(...TRUNCATED) | "Suppose I have two free-particles $A,B$ whose positions evolve according to wave functions $\\psi_A(...TRUNCATED) | "Okay, let's try to figure out how to get the wave function for the relative position of two particl(...TRUNCATED) | [32313,11,1077,594,1430,311,7071,700,1246,311,633,279,12060,729,369,279,8674,2309,315,1378,18730,13,(...TRUNCATED) | [0.0,0.0,-0.2890625,-0.3125,-0.0155029296875,0.0,-0.216796875,-0.0966796875,-0.023193359375,0.0,-0.2(...TRUNCATED) | [[32313,1986,40,785,80022,71486,1654,32462,4416,5338,35439,10061,1474,9485,2522,3838],[11,13,345,304(...TRUNCATED) | [[0.0,-11.375,-11.875,-12.0,-12.5,-13.0,-13.25,-14.25,-14.875,-15.5,-16.25,-16.625,-16.875,-17.0,-17(...TRUNCATED) |
0 | 1 | 1 | "Suppose I have two free-particles $A,B$ whose positions evolve according to wave functions $\\psi_A(...TRUNCATED) | "Suppose I have two free-particles $A,B$ whose positions evolve according to wave functions $\\psi_A(...TRUNCATED) | "Okay, let's try to figure out how to get the wave function for the relative position between two pa(...TRUNCATED) | [32313,11,1077,594,1430,311,7071,700,1246,311,633,279,12060,729,369,279,8674,2309,1948,1378,18730,13(...TRUNCATED) | [0.0,0.0,-0.259765625,-0.345703125,-0.0155029296875,0.0,-0.2109375,-0.0966796875,-0.023193359375,0.0(...TRUNCATED) | [[32313,1986,40,785,80022,71486,1654,32462,4416,5338,35439,10061,9485,1474,2522,5050],[11,13,345,304(...TRUNCATED) | [[0.0,-11.0,-11.875,-12.125,-12.375,-13.25,-13.375,-14.25,-14.75,-15.875,-16.25,-16.5,-17.0,-17.375,(...TRUNCATED) |
0 | 2 | 2 | "Suppose I have two free-particles $A,B$ whose positions evolve according to wave functions $\\psi_A(...TRUNCATED) | "Suppose I have two free-particles $A,B$ whose positions evolve according to wave functions $\\psi_A(...TRUNCATED) | "Okay, let's try to figure out how to get the wave function for the relative position of two particl(...TRUNCATED) | [32313,11,1077,594,1430,311,7071,700,1246,311,633,279,12060,729,369,279,8674,2309,315,1378,18730,13,(...TRUNCATED) | [0.0,0.0,-0.259765625,-0.345703125,-0.0155029296875,0.0,-0.216796875,-0.12451171875,-0.023193359375,(...TRUNCATED) | [[32313,1986,785,40,80022,1654,71486,32462,4416,5338,35439,10061,9485,1474,5050,93217],[11,13,345,30(...TRUNCATED) | [[0.0,-11.375,-11.875,-12.25,-12.875,-13.5,-13.5,-14.25,-14.75,-16.0,-16.5,-16.625,-17.125,-17.25,-1(...TRUNCATED) |
0 | 3 | 3 | "Suppose I have two free-particles $A,B$ whose positions evolve according to wave functions $\\psi_A(...TRUNCATED) | "Suppose I have two free-particles $A,B$ whose positions evolve according to wave functions $\\psi_A(...TRUNCATED) | "Okay, let's try to figure out how to get the wave function for the relative position of two particl(...TRUNCATED) | [32313,11,1077,594,1430,311,7071,700,1246,311,633,279,12060,729,369,279,8674,2309,315,1378,18730,13,(...TRUNCATED) | [0.0,0.0,-0.265625,-0.3125,-0.007781982421875,0.0,-0.216796875,-0.12451171875,-0.0155029296875,0.0,-(...TRUNCATED) | [[32313,1986,40,785,80022,71486,1654,32462,4416,5338,35439,10061,1474,9485,2522,3838],[11,13,345,304(...TRUNCATED) | [[0.0,-11.375,-11.75,-12.125,-12.5,-13.125,-13.25,-14.375,-14.875,-15.5,-16.125,-16.75,-16.875,-17.1(...TRUNCATED) |
0 | 4 | 4 | "Suppose I have two free-particles $A,B$ whose positions evolve according to wave functions $\\psi_A(...TRUNCATED) | "Suppose I have two free-particles $A,B$ whose positions evolve according to wave functions $\\psi_A(...TRUNCATED) | "Okay, let's try to figure out how to get the wave function for the relative position of two particl(...TRUNCATED) | [32313,11,1077,594,1430,311,7071,700,1246,311,633,279,12060,729,369,279,8674,2309,315,1378,18730,13,(...TRUNCATED) | [0.0,0.0,-0.318359375,-0.283203125,-0.0155029296875,0.0,-0.216796875,-0.12451171875,-0.0155029296875(...TRUNCATED) | [[32313,1986,40,785,80022,1654,71486,32462,4416,5338,35439,10061,9485,1474,2522,5050],[11,13,345,304(...TRUNCATED) | [[0.0,-11.25,-12.0,-12.25,-12.625,-13.375,-13.5,-14.5,-14.75,-16.0,-16.25,-16.75,-17.125,-17.375,-18(...TRUNCATED) |
0 | 5 | 5 | "Suppose I have two free-particles $A,B$ whose positions evolve according to wave functions $\\psi_A(...TRUNCATED) | "Suppose I have two free-particles $A,B$ whose positions evolve according to wave functions $\\psi_A(...TRUNCATED) | "Okay, let's try to figure out how to get the wave function for the relative position of two particl(...TRUNCATED) | [32313,11,1077,594,1430,311,7071,700,1246,311,633,279,12060,729,369,279,8674,2309,315,1378,18730,13,(...TRUNCATED) | [0.0,0.0,-0.259765625,-0.3125,-0.0155029296875,0.0,-0.216796875,-0.12451171875,-0.023193359375,0.0,-(...TRUNCATED) | [[32313,1986,40,785,80022,1654,71486,32462,4416,5338,35439,10061,9485,1474,5050,93217],[11,13,345,30(...TRUNCATED) | [[0.0,-11.125,-12.25,-12.25,-12.75,-13.5,-13.5,-14.5,-14.75,-16.25,-16.25,-16.75,-17.125,-17.375,-18(...TRUNCATED) |
0 | 6 | 6 | "Suppose I have two free-particles $A,B$ whose positions evolve according to wave functions $\\psi_A(...TRUNCATED) | "Suppose I have two free-particles $A,B$ whose positions evolve according to wave functions $\\psi_A(...TRUNCATED) | "Okay, let's try to figure out how to get the wave function for the relative position of two particl(...TRUNCATED) | [32313,11,1077,594,1430,311,7071,700,1246,311,633,279,12060,729,369,279,8674,2309,315,1378,18730,13,(...TRUNCATED) | [0.0,0.0,-0.259765625,-0.345703125,-0.0155029296875,0.0,-0.216796875,-0.0966796875,-0.023193359375,0(...TRUNCATED) | [[32313,1986,40,785,80022,1654,71486,32462,4416,5338,35439,10061,9485,1474,2522,5050],[11,13,345,304(...TRUNCATED) | [[0.0,-11.125,-12.125,-12.25,-12.625,-13.375,-13.5,-14.5,-14.875,-16.125,-16.375,-16.75,-17.125,-17.(...TRUNCATED) |
0 | 7 | 7 | "Suppose I have two free-particles $A,B$ whose positions evolve according to wave functions $\\psi_A(...TRUNCATED) | "Suppose I have two free-particles $A,B$ whose positions evolve according to wave functions $\\psi_A(...TRUNCATED) | "Okay, let's try to figure out how to get the wave function for the relative position of two particl(...TRUNCATED) | [32313,11,1077,594,1430,311,7071,700,1246,311,633,279,12060,729,369,279,8674,2309,315,1378,18730,13,(...TRUNCATED) | [0.0,0.0,-0.27734375,-0.3125,-0.0155029296875,0.0,-0.2109375,-0.12451171875,-0.023193359375,0.0,-0.2(...TRUNCATED) | [[32313,1986,40,785,80022,71486,1654,32462,4416,5338,35439,10061,1474,9485,3838,2522],[11,13,345,304(...TRUNCATED) | [[0.0,-11.5,-12.0,-12.25,-12.625,-13.0,-13.375,-14.5,-15.0,-15.875,-16.25,-16.875,-17.0,-17.25,-18.0(...TRUNCATED) |
1 | 0 | 8 | "PROBLEM 1.22 Give the hybridization state of each carbon in the following compounds:\n(f) Acrylonit(...TRUNCATED) | "PROBLEM 1.22 Give the hybridization state of each carbon in the following compounds:\n(f) Acrylonit(...TRUNCATED) | "Okay, so I need to figure out the hybridization states of each carbon in acrylonitrile, which has t(...TRUNCATED) | [32313,11,773,358,1184,311,7071,700,279,24989,2022,5302,315,1817,12499,304,1613,884,12212,21561,457,(...TRUNCATED) | [0.0,0.0,-0.4765625,0.0,0.0,0.0,-0.007781982421875,0.0,0.0,0.0,0.0,-0.038330078125,0.0,0.0,0.0,-0.25(...TRUNCATED) | [[32313,32462,40,1986,80022,785,71486,44667,3925,35439,16910,18665,2461,4416,24765,106287],[11,345,3(...TRUNCATED) | [[0.0,-10.125,-11.0,-12.375,-13.25,-13.625,-14.375,-16.25,-16.5,-16.625,-17.375,-17.5,-17.75,-17.875(...TRUNCATED) |
1 | 1 | 9 | "PROBLEM 1.22 Give the hybridization state of each carbon in the following compounds:\n(f) Acrylonit(...TRUNCATED) | "PROBLEM 1.22 Give the hybridization state of each carbon in the following compounds:\n(f) Acrylonit(...TRUNCATED) | "Okay, so I need to figure out the hybridization states of each carbon in acrylonitrile, which has t(...TRUNCATED) | [32313,11,773,358,1184,311,7071,700,279,24989,2022,5302,315,1817,12499,304,1613,884,12212,21561,457,(...TRUNCATED) | [0.0,0.0,-0.3125,0.0,0.0,0.0,-0.007781982421875,0.0,0.0,0.0,0.0,-0.038330078125,0.0,0.0,0.0,-0.20410(...TRUNCATED) | [[32313,32462,40,1986,80022,785,71486,44667,3925,35439,16910,18665,2461,4416,24765,30816],[11,345,38(...TRUNCATED) | [[0.0,-10.75,-11.125,-12.875,-13.75,-14.125,-14.75,-16.5,-16.625,-16.75,-17.5,-18.0,-18.125,-18.125,(...TRUNCATED) |
OpenThoughts-4 Science SDG: Qwen3-30B-A3B-Thinking-2507 (n=8, top-16 logprobs)
Synthetic generations from
Qwen/Qwen3-30B-A3B-Thinking-2507
on the Marin OpenThoughts-4 science SDG prompt
set.
Each prompt is sampled n=8 times, and for every generated token the dataset
stores the chosen-token log probability plus the top-16 log probabilities
over the vocabulary, enabling distillation, KL-style fine-tuning,
reranking, and uncertainty analysis.
Generation setup
| Field | Value |
|---|---|
| Generator model | Qwen/Qwen3-30B-A3B-Thinking-2507 |
| Source prompts | marin-community/hero-run-4-science-sdg-prompts-boxed-n8 (26,041 unique prompts) |
Samples per prompt (n) |
8 |
Logprobs returned (k) |
16 (top-k vocab logprobs per generated token) |
| Max generated tokens | 32,768 |
| Max model length | 34,816 |
| Temperature | 0.8 |
| Inference engine | vLLM on TPU v6e-4, tensor_parallel_size=4 |
| Producer | marin-community/marin — experiments/sdg/science/qwen3-30b-a3b-thinking-2507/sdg_ot4_30k_science_qwen3_30b_a3b_thinking_32768_tokens.py |
Schema
The dataset is a flattened parquet table with one row per
(prompt, sample_index) pair. With 26,041 unique prompts and n=8 samples
each, the dataset contains 208,328 rows total.
Identifier columns
| Column | Type | Description |
|---|---|---|
prompt_index |
int64 | 0-based index of the source prompt within the prompt set (0 … 26,040) |
response_index |
int64 | 0-based sample index within that prompt (0 … 7) |
_unique_row_id |
string | Stable globally-unique id for the (prompt, response) pair, copied from the source prompt set; safe key for joins and dedup |
instruction_seed |
string | The original natural-language science problem from OpenThoughts-4 (before any chat templating) |
generation_prompt |
string | The chat-templated prompt actually fed to vLLM (Qwen3 chat template applied to instruction_seed) |
A given prompt is fully identified by either prompt_index or _unique_row_id;
the 8 samples for a prompt share both keys and differ only in response_index.
Generation columns
| Column | Type | Description |
|---|---|---|
generated_text |
string | Decoded model response (everything after the chat template's assistant turn) |
generated_token_ids |
list[int32], length T |
Token ids of the generated response |
generated_token_logprobs |
list[float32], length T |
Log probability of each chosen token under the model |
generated_top_logprob_token_ids |
list[int32], length T × k |
Flattened top-k candidate token ids at each step |
generated_top_logprobs |
list[float32], length T × k |
Flattened log probabilities of those top-k candidates at each step |
Where T = number of generated tokens for that row and k = 16.
Reshaping the flattened top-k arrays
vLLM was run with flat_logprobs=True for compactness; the per-step
top-k arrays are stored as 1-D lists. To recover the standard
(T, k) shape:
import numpy as np
import pyarrow.parquet as pq
df = pq.read_table("part-000000.parquet").to_pandas()
row = df.iloc[0]
T = len(row["generated_token_ids"])
k = 16
top_ids = np.asarray(row["generated_top_logprob_token_ids"]).reshape(T, k)
top_logps = np.asarray(row["generated_top_logprobs"]).reshape(T, k)
# top_ids[t, :] = top-16 candidate token ids at step t
# top_logps[t, :] = log p of those candidates at step t (sorted high → low by vLLM)
# the chosen token may or may not appear in the top-k; use generated_token_logprobs
# for the chosen-token logprob.
File layout
The dataset is sharded into ~3,600 parquet files named part-NNNNNN.parquet.
Use the default config to load the full train split.
Companion datasets
| Slice | Generator |
|---|---|
| science | Qwen3-30B-A3B-Thinking-2507 (this dataset) |
| science | Qwen3-32B |
| science | Qwen3-4B |
| science | Gemma-4-31B-IT (forthcoming) |
| code | Qwen3-30B-A3B-Thinking-2507 / Qwen3-32B / Qwen3-4B |
License
Released under Apache 2.0. The underlying generator model
(Qwen/Qwen3-30B-A3B-Thinking-2507) is governed by its own license; consult
the model card before redistribution.
Citation
If you use this dataset, please cite the Marin project and the Qwen3 technical report.
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