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values | r1_response stringlengths 346 3.64k ⌀ | r1_reasoning_content stringlengths 1.93k 67.6k ⌀ | extract_solution stringclasses 358
values | url stringclasses 54
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values | success bool 1
class | page_count int64 6 500 ⌀ | page_number int64 1 499 ⌀ | question_choices_solutions stringclasses 376
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values | extracted_answer_choices sequencelengths 1 16 ⌀ | matched_solution stringclasses 348
values | qa_validation_outputs bool 1
class | classifier_reasoning stringlengths 45 424 | is_organic_chemistry bool 1
class | ms_id int64 1 3.95k | reasoning sequencelengths 16 16 | deepseek_solution sequencelengths 16 16 | final_reasoning_trace sequencelengths 16 16 | correct sequencelengths 16 16 | _majority_responses sequencelengths 1 16 | verified_final_reasoning_trace stringlengths 1.49k 74.5k | conversations listlengths 2 2 |
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"By pH meter or by color comparison with indicators, the solutions listed below are found to have th(...TRUNCATED) | organic-chemistry-questions | "Given are solutions with known concentrations and pH values. We need to calculate the ionization co(...TRUNCATED) | 34,656 | 3,010 | General Chemistry | "\n\n(a) For 0.0100 M HC₂H₃O₂ (pH = 3.39): \n- [H⁺] = 10⁻³⋅³⁹ ≈ 4.07 × 10⁻⁴ (...TRUNCATED) | "Okay, so I need to calculate the ionization constants for each of these solutions based on their co(...TRUNCATED) | null | null | null | null | null | null | null | null | null | null | null | "The provided answer contains various segments and explanations without forming long paragraphs in a(...TRUNCATED) | true | 2,327 | ["Okay, so I need to calculate the ionization constants for each of these solutions based on their p(...TRUNCATED) | ["**Step-by-Step Solutions:**\n\n**(a) 0.0100 M HC₂H₃O₂ (Acetic Acid) with pH = 3.39** \n1. C(...TRUNCATED) | ["<think>\nOkay, so I need to calculate the ionization constants for each of these solutions based o(...TRUNCATED) | [
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"Using Bernoulli’s equation for an unsteady irrotational motion of an inviscid incompressible flu(...TRUNCATED) | stackexchange-physics | "Let's carefully analyze and solve the problem step-by-step.\n\n---\n\n### **Given:**\n\n- Water of (...TRUNCATED) | 32,772 | 12,452 | null | null | null | null | null | null | null | null | null | null | null | null | null | null | "The provided answer contains several long paragraphs filled with mathematical equations and explana(...TRUNCATED) | null | 2,089 | ["Okay, so I need to solve this problem about water being driven through a horizontal tube from a ba(...TRUNCATED) | ["To solve the problem of water being driven through a horizontal tube from a balloon, we use Bernou(...TRUNCATED) | ["<think>\nOkay, so I need to solve this problem about water being driven through a horizontal tube (...TRUNCATED) | [
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"Imagine you made the photosynthetic fish described in the lecture, but you didn’t give it a carbo(...TRUNCATED) | organic-chemistry-questions | "If you made a photosynthetic fish but did not provide it with an external carbon source, the outcom(...TRUNCATED) | 44,571 | 1,826 | Biochemistry and Molecular Biology | "\n\nIf a photosynthetic fish is engineered but deprived of a carbon source, the following outcomes (...TRUNCATED) | "Okay, so I need to figure out what would happen if someone created a photosynthetic fish but didn't(...TRUNCATED) | null | null | null | null | null | null | null | null | null | null | null | "The provided answer is structured with multiple bullet points and straightforward sentences that do(...TRUNCATED) | true | 3,102 | ["Okay, so the question is about a photosynthetic fish that was created, but without giving it a car(...TRUNCATED) | ["If a photosynthetic fish is engineered but not provided with a carbon source (such as CO₂), the (...TRUNCATED) | ["<think>\nOkay, so the question is about a photosynthetic fish that was created, but without giving(...TRUNCATED) | [
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"Which resonance contributor makes the greater contribution to the resonance hybrid? a. CH3CHCH=CH2 (...TRUNCATED) | organic-chemistry-questions | "You asked which resonance contributor makes the greater contribution to the resonance hybrid betwee(...TRUNCATED) | 11,955 | 2,483 | null | null | null | null | "https://biologystudentuprcayey.wordpress.com/wp-content/uploads/2012/08/organic-chemistry-5th-editi(...TRUNCATED) | organic-chemistry-5th-edition-by-paula-yurkanis-bruice.pdf | true | 500 | 295 | "QUESTION: \"Draw resonance contributors for the following species, showing all the lone pairs: 1. C(...TRUNCATED) | "\"Which resonance contributor makes the greater contribution to the resonance hybrid? a. CH3CHCH=CH(...TRUNCATED) | [
"\"free response\""
] | "free response answer" | true | "The provided answer consists of shorter paragraphs throughout and does not contain any long paragra(...TRUNCATED) | true | 777 | ["Okay, let's see. The question is about resonance contributors and which one contributes more to th(...TRUNCATED) | ["To determine which resonance contributor makes the greater contribution to the resonance hybrid, w(...TRUNCATED) | ["<think>\nOkay, let's see. The question is about resonance contributors and which one contributes m(...TRUNCATED) | [
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"Show that \\(\\lambda = \\exp(\\mu/kT) = nV_Q\\) for an ideal gas, valid where \\(\\lambda \\ll 1\\(...TRUNCATED) | organic-chemistry-questions | "We want to show that for an ideal gas, in the classical limit where \\(\\lambda \\ll 1\\),\n\n\\[\n(...TRUNCATED) | 50,988 | 3,109 | Thermodynamics and Statistical Mechanics | "\n\nTo show that \\(\\lambda = \\exp(\\mu/kT) = nV_Q\\) for an ideal gas valid where \\(\\lambda \\(...TRUNCATED) | "Okay, so I need to show that the fugacity λ is equal to exp(μ/kT) which is also equal to n times (...TRUNCATED) | "In the approximation \\(\\lambda \\ll 1\\), Fermi-Dirac and Bose-Einstein statistics both tend to M(...TRUNCATED) | null | null | null | null | null | null | null | null | null | null | "The provided answer is structured using short, manageable paragraphs, ensuring that no long paragra(...TRUNCATED) | true | 3,598 | ["Okay, so I need to show that λ = exp(μ/(kT)) equals nV_Q for an ideal gas, and this is valid whe(...TRUNCATED) | ["To demonstrate that \\(\\lambda = \\exp(\\mu/kT) = nV_Q\\) for an ideal gas in the classical limit(...TRUNCATED) | ["<think>\nOkay, so I need to show that λ = exp(μ/(kT)) equals nV_Q for an ideal gas, and this is (...TRUNCATED) | [
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"A very active cell-free protein synthesis system can be prepared from reticulocytes. These immature(...TRUNCATED) | organic-chemistry-questions | "Let's analyze the problem step by step.\n\n---\n\n### Given Information:\n\n- **HCR concentration t(...TRUNCATED) | 35,770 | 2,986 | Molecular Biology | "\n\nTo solve part A, we need to calculate the ratio of HCR molecules to ribosomes and globin mRNA a(...TRUNCATED) | "Okay, let's see. I need to solve part A first, which is calculating the ratio of HCR molecules to r(...TRUNCATED) | null | null | null | null | null | null | null | null | null | null | null | "The provided answer is structured without any long paragraphs. It is organized into clear sections (...TRUNCATED) | true | 2,440 | ["Okay, so I need to solve part A first. The question is asking for the ratio of HCR molecules to ri(...TRUNCATED) | ["**A. Calculation of HCR to Ribosomes and mRNA Ratios**\n\n1. **HCR Concentration**:\n - 1 μg/mL(...TRUNCATED) | ["<think>\nOkay, so I need to solve part A first. The question is asking for the ratio of HCR molecu(...TRUNCATED) | [
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"A mass of 5 kg of a gas of molecular weight 44 has a work of 100.5 kJ done on it at constant volume(...TRUNCATED) | organic-chemistry-questions | "Let's analyze the problem step-by-step.\n\n---\n\n### Given data:\n- Mass of gas, \\( m = 5 \\, \\t(...TRUNCATED) | 47,295 | 2,637 | Fluid Mechanics | "\n\nGiven a mass of 5 kg of a gas with a molecular weight of 44, a work of 100.5 kJ done on it at c(...TRUNCATED) | "Okay, so I need to find R, c_v, c_p, and k for this gas. The given information is: mass is 5 kg, mo(...TRUNCATED) | null | null | null | null | null | null | null | null | null | null | null | "The provided answer consists of structured and clearly delineated sections with no long paragraphs.(...TRUNCATED) | true | 3,317 | ["Okay, so I need to find R, c_v, c_p, and k for this gas. Let me start by recalling what each of th(...TRUNCATED) | ["Given a mass of 5 kg of a gas with a molecular weight of 44, a work of 100.5 kJ is done on it at c(...TRUNCATED) | ["<think>\nOkay, so I need to find R, c_v, c_p, and k for this gas. Let me start by recalling what e(...TRUNCATED) | [
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"Identify the substances (A) through (E) in the sequence\\n\\n\\[\\text{C}_6\\text{H}_5\\text{COOH} (...TRUNCATED) | organic-chemistry-questions | "Let's analyze the reaction sequence step-by-step:\n\nGiven sequence:\n\n\\[\n\\text{C}_6\\text{H}_5(...TRUNCATED) | 28,010 | 4,351 | Organic Chemistry | "\n\nThe substances (A) through (E) in the reaction sequence are identified as follows:\n\n1. **C₆(...TRUNCATED) | "Okay, so I need to figure out the substances A through E in this reaction sequence starting from be(...TRUNCATED) | null | null | null | null | null | null | null | null | null | null | null | "The answer is presented in a sequential, bullet-point format without any long paragraphs, ensuring (...TRUNCATED) | true | 1,841 | ["Okay, so I have this organic chemistry problem here where I need to identify substances A through (...TRUNCATED) | ["The reaction sequence starting from benzoic acid (C₆H₅COOH) involves several transformations. (...TRUNCATED) | ["<think>\nOkay, so I have this organic chemistry problem here where I need to identify substances A(...TRUNCATED) | [
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"Good day, I am a student of Physics at the university of Padova, I must solve this problem for my e(...TRUNCATED) | stackexchange-physics | "Hello! Your problem is a very good one and quite instructive in electromagnetic theory. Let's caref(...TRUNCATED) | 48,110 | 11,919 | null | null | null | null | null | null | null | null | null | null | null | null | null | null | "The provided answer contains long paragraphs. Multiple sections of the answer are written in a cont(...TRUNCATED) | null | 3,314 | ["Okay, let's start from the beginning. The electric field is given as E = E₀ sin(ωt) [sin(ωz), (...TRUNCATED) | ["To find the magnetic field \\( \\mathbf{B} \\), we use Faraday's Law \\( \\nabla \\times \\mathbf{(...TRUNCATED) | ["<think>\nOkay, let's start from the beginning. The electric field is given as E = E₀ sin(ωt) [s(...TRUNCATED) | [
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"Question 1: What is the status of string random matrix models (~ triangulated random surfaces) with(...TRUNCATED) | stackexchange-physics | "Great questions! You are touching on deep and rich topics in the intersection of random matrix theo(...TRUNCATED) | 13,974 | 10,031 | null | null | null | null | null | null | null | null | null | null | null | null | null | null | "The response consists of multiple concise paragraphs that break down complex information into small(...TRUNCATED) | null | 922 | ["Okay, let me try to tackle these questions. They're about matrix models in string theory, which I (...TRUNCATED) | ["**Answer to Question 1:** \nThe status of string random matrix models for central charge \\( c > (...TRUNCATED) | ["<think>\nOkay, let me try to tackle these questions. They're about matrix models in string theory,(...TRUNCATED) | [
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