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My question is: Gabby is saving money to buy a new makeup set. The makeup set costs $65 and she already has $35. Gabby’s mom gives her an additional $20. How much money does Gabby need to buy the set? Your thoughts: In your response, all lowercase words should appear at most 3 times.
sum
[ { "content": "My question is: Gabby is saving money to buy a new makeup set. The makeup set costs $65 and she already has $35. Gabby’s mom gives her an additional $20. How much money does Gabby need to buy the set? Your thoughts: In your response, all lowercase words should appear at most 3 times.", "role":...
1
[ "count:lowercase_counting" ]
[{"N": 3}]
ifeval
ai2-adapt-dev/flan_v2_converted_48898
multi
0
As a movie buff, you've decided to analyze the evolution of action sequences in a particular movie franchise. You observe that the intensity of action sequences in each movie can be modeled by the polynomial function \( I(x) = 2x^3 - 5x^2 + 3x + 1 \), where \( x \) represents the sequence number in the movie franchise ...
To determine critical points of \( I(x) = 2x^3 - 5x^2 + 3x + 1 \), first compute its derivative: \( I'(x) = 6x^2 - 10x + 3 \). Set \( I'(x) = 0 \) and solve for \( x \): the roots are \( x = \frac{5 \pm \sqrt{13}}{6} \). These are the potential local extrema. To classify them, compute the second derivative \( I''(x) = ...
[ { "content": "As a movie buff, you've decided to analyze the evolution of action sequences in a particular movie franchise. You observe that the intensity of action sequences in each movie can be modeled by the polynomial function \\( I(x) = 2x^3 - 5x^2 + 3x + 1 \\), where \\( x \\) represents the sequence numb...
1
[ "paragraphs:paragraphs2", "length_constraints:number_sentences", "keywords:word_once" ]
[{}, {"num_sentences": 24, "relation": "less than"}, {"keyword": "swing"}]
ifeval
personahub_sbigspk6otyv4sk03xu34k4t
multi
0
As a movie buff, you've decided to analyze the evolution of action sequences in a particular movie franchise. You observe that the intensity of action sequences in each movie can be modeled by the polynomial function \( I(x) = 2x^3 - 5x^2 + 3x + 1 \), where \( x \) represents the sequence number in the movie franchise ...
To find the critical points of \( I(x) = 2x^3 - 5x^2 + 3x + 1 \), we compute the first derivative: \( I'(x) = 6x^2 - 10x + 3 \). Setting \( I'(x) = 0 \), we solve the quadratic equation \( 6x^2 - 10x + 3 = 0 \) to get \( x = \frac{5 \pm \sqrt{13}}{6} \). These are the critical points, where the intensity could reach a ...
[ { "content": "As a movie buff, you've decided to analyze the evolution of action sequences in a particular movie franchise. You observe that the intensity of action sequences in each movie can be modeled by the polynomial function \\( I(x) = 2x^3 - 5x^2 + 3x + 1 \\), where \\( x \\) represents the sequence numb...
1
[ "paragraphs:paragraphs2", "length_constraints:number_sentences", "keywords:word_once" ]
[{}, {"num_sentences": 24, "relation": "less than"}, {"keyword": "swing"}]
ifeval
personahub_sbigspk6otyv4sk03xu34k4t
multi
0
As a movie buff, you've decided to analyze the evolution of action sequences in a particular movie franchise. You observe that the intensity of action sequences in each movie can be modeled by the polynomial function \( I(x) = 2x^3 - 5x^2 + 3x + 1 \), where \( x \) represents the sequence number in the movie franchise ...
To find the critical points of \( I(x) = 2x^3 - 5x^2 + 3x + 1 \), we first compute its derivative: \( I'(x) = 6x^2 - 10x + 3 \). Setting \( I'(x) = 0 \) gives quadratic equation \( 6x^2 - 10x + 3 = 0 \). Solving for \( x \), we get \( x = \frac{10 \pm \sqrt{10^2 - 4 \cdot 6 \cdot 3}}{2 \cdot 6} = \frac{10 \pm \sqrt{64}...
[ { "content": "As a movie buff, you've decided to analyze the evolution of action sequences in a particular movie franchise. You observe that the intensity of action sequences in each movie can be modeled by the polynomial function \\( I(x) = 2x^3 - 5x^2 + 3x + 1 \\), where \\( x \\) represents the sequence numb...
1
[ "paragraphs:paragraphs2", "length_constraints:number_sentences", "keywords:word_once" ]
[{}, {"num_sentences": 24, "relation": "less than"}, {"keyword": "swing"}]
ifeval
personahub_sbigspk6otyv4sk03xu34k4t
multi
0
As a movie buff, you've decided to analyze the evolution of action sequences in a particular movie franchise. You observe that the intensity of action sequences in each movie can be modeled by the polynomial function \( I(x) = 2x^3 - 5x^2 + 3x + 1 \), where \( x \) represents the sequence number in the movie franchise ...
To determine the critical points of \( I(x) = 2x^3 - 5x^2 + 3x + 1 \), we find the first derivative \( I'(x) = 6x^2 - 10x + 3 \). Setting \( I'(x) = 0 \), we solve for \( x \): \( 6x^2 - 10x + 3 = 0 \). Factoring gives \( (2x - 1)(3x - 3) = 0 \), yielding critical points at \( x = \frac{1}{2} \) and \( x = 1 \). To cla...
[ { "content": "As a movie buff, you've decided to analyze the evolution of action sequences in a particular movie franchise. You observe that the intensity of action sequences in each movie can be modeled by the polynomial function \\( I(x) = 2x^3 - 5x^2 + 3x + 1 \\), where \\( x \\) represents the sequence numb...
1
[ "paragraphs:paragraphs2", "length_constraints:number_sentences", "keywords:word_once" ]
[{}, {"num_sentences": 24, "relation": "less than"}, {"keyword": "swing"}]
ifeval
personahub_sbigspk6otyv4sk03xu34k4t
multi
0
As a movie buff, you've decided to analyze the evolution of action sequences in a particular movie franchise. You observe that the intensity of action sequences in each movie can be modeled by the polynomial function \( I(x) = 2x^3 - 5x^2 + 3x + 1 \), where \( x \) represents the sequence number in the movie franchise ...
To find the critical points of \( I(x) \), we first compute its derivative: \( I'(x) = 6x^2 - 10x + 3 \). Setting \( I'(x) = 0 \) and solving the quadratic equation using the quadratic formula gives \( x = \frac{10 \pm \sqrt{(-10)^2 - 4 \cdot 6 \cdot 3}}{2 \cdot 6} \), simplifying to \( x = \frac{10 \pm \sqrt{100 - 72}...
[ { "content": "As a movie buff, you've decided to analyze the evolution of action sequences in a particular movie franchise. You observe that the intensity of action sequences in each movie can be modeled by the polynomial function \\( I(x) = 2x^3 - 5x^2 + 3x + 1 \\), where \\( x \\) represents the sequence numb...
1
[ "paragraphs:paragraphs2", "length_constraints:number_sentences", "keywords:word_once" ]
[{}, {"num_sentences": 24, "relation": "less than"}, {"keyword": "swing"}]
ifeval
personahub_sbigspk6otyv4sk03xu34k4t
multi
0
As a movie buff, you've decided to analyze the evolution of action sequences in a particular movie franchise. You observe that the intensity of action sequences in each movie can be modeled by the polynomial function \( I(x) = 2x^3 - 5x^2 + 3x + 1 \), where \( x \) represents the sequence number in the movie franchise ...
To find the critical points of \( I(x) = 2x^3 - 5x^2 + 3x + 1 \), we take the derivative: \( I'(x) = 6x^2 - 10x + 3 \). Setting \( I'(x) = 0 \) and solving the quadratic equation yields \( x = \frac{1}{6} (5 \pm \sqrt{7}) \). Since \( x \) represents sequence numbers, we consider whole numbers. Testing \( x = 1 \) and ...
[ { "content": "As a movie buff, you've decided to analyze the evolution of action sequences in a particular movie franchise. You observe that the intensity of action sequences in each movie can be modeled by the polynomial function \\( I(x) = 2x^3 - 5x^2 + 3x + 1 \\), where \\( x \\) represents the sequence numb...
1
[ "paragraphs:paragraphs2", "length_constraints:number_sentences", "keywords:word_once" ]
[{}, {"num_sentences": 24, "relation": "less than"}, {"keyword": "swing"}]
ifeval
personahub_sbigspk6otyv4sk03xu34k4t
multi
0
As a movie buff, you've decided to analyze the evolution of action sequences in a particular movie franchise. You observe that the intensity of action sequences in each movie can be modeled by the polynomial function \( I(x) = 2x^3 - 5x^2 + 3x + 1 \), where \( x \) represents the sequence number in the movie franchise ...
To find the critical points of \( I(x) = 2x^3 - 5x^2 + 3x + 1 \), we first compute its derivative: \( I'(x) = 6x^2 - 10x + 3 \). Setting \( I'(x) = 0 \), we solve the quadratic equation \( 6x^2 - 10x + 3 = 0 \). Applying the quadratic formula \( x = \frac{-b \pm \sqrt{b^2 - 4ac}}{2a} \) with \( a = 6 \), \( b = -10 \),...
[ { "content": "As a movie buff, you've decided to analyze the evolution of action sequences in a particular movie franchise. You observe that the intensity of action sequences in each movie can be modeled by the polynomial function \\( I(x) = 2x^3 - 5x^2 + 3x + 1 \\), where \\( x \\) represents the sequence numb...
1
[ "paragraphs:paragraphs2", "length_constraints:number_sentences", "keywords:word_once" ]
[{}, {"num_sentences": 24, "relation": "less than"}, {"keyword": "swing"}]
ifeval
personahub_sbigspk6otyv4sk03xu34k4t
multi
0
As a movie buff, you've decided to analyze the evolution of action sequences in a particular movie franchise. You observe that the intensity of action sequences in each movie can be modeled by the polynomial function \( I(x) = 2x^3 - 5x^2 + 3x + 1 \), where \( x \) represents the sequence number in the movie franchise ...
To determine the critical points of \( I(x) = 2x^3 - 5x^2 + 3x + 1 \), we first find its derivative: \( I'(x) = 6x^2 - 10x + 3 \). Setting \( I'(x) = 0 \) and solving the quadratic equation, we get \( x = \frac{5 \pm \sqrt{13}}{6} \). These \( x \) values represent potential local maxima or minima. Evaluating \( I''(x)...
[ { "content": "As a movie buff, you've decided to analyze the evolution of action sequences in a particular movie franchise. You observe that the intensity of action sequences in each movie can be modeled by the polynomial function \\( I(x) = 2x^3 - 5x^2 + 3x + 1 \\), where \\( x \\) represents the sequence numb...
1
[ "paragraphs:paragraphs2", "length_constraints:number_sentences", "keywords:word_once" ]
[{}, {"num_sentences": 24, "relation": "less than"}, {"keyword": "swing"}]
ifeval
personahub_sbigspk6otyv4sk03xu34k4t
multi
0
An online tutor is designing a set of practice sessions to help a teenager build confidence in social situations. The tutor uses a unique approach where each session is represented as a node in a connected graph, and edges between nodes represent the transition from one session to another. The tutor wants to ensure tha...
to prove m ≥ n^2/4 consider that in a connected graph with n nodes the minimum number of edges required is n 1 but since we want each node to be visited exactly once in a hamiltonian circuit we also need to ensure there are enough edges to form a cycle with no repeated nodes each additional node must connect to at leas...
[ { "content": "An online tutor is designing a set of practice sessions to help a teenager build confidence in social situations. The tutor uses a unique approach where each session is represented as a node in a connected graph, and edges between nodes represent the transition from one session to another. The tut...
1
[ "copy:repeat_phrase", "keywords:frequency", "detectable_format:sentence_hyphens", "change_case:capital_word_frequency", "length_constraints:number_paragraphs" ]
[{"phrase": "All that glitters is not gold", "small_n": 3}, {"keyword": "repeat", "frequency": 1, "relation": "at least"}, {}, {"capital_frequency": 31, "capital_relation": "less than"}, {"num_paragraphs": 7}]
ifeval
personahub_t2p2xurvhmwr0dt5zqzuzfao
multi
0
A fellow senior citizen named Alex was initially skeptical about getting vaccinated. After extensive research and observing the positive effects on his friends, Alex decided to get vaccinated. Alex wants to share his positive experience with others by analyzing some data related to vaccination and its effects on commun...
### Sub-problem A: Expected Number of Infected Senior Citizens - **Probability of infection without vaccination**: 0.25 - **Probability of infection with vaccination**: 0.05 - **Total senior citizens**: 1,000 - **Vaccinated senior citizens**: 70% of 1,000 = 700 - **Unvaccinated senior citizens**: 30% of 1,000...
[ { "content": "A fellow senior citizen named Alex was initially skeptical about getting vaccinated. After extensive research and observing the positive effects on his friends, Alex decided to get vaccinated. Alex wants to share his positive experience with others by analyzing some data related to vaccination and...
1
[ "count:count_increment_word" ]
[{"keyword1": "stomach", "keyword2": "shine"}]
ifeval
personahub_la6dqy5pgdjxo8vb6ce6xc76
multi
0
A fellow senior citizen named Alex was initially skeptical about getting vaccinated. After extensive research and observing the positive effects on his friends, Alex decided to get vaccinated. Alex wants to share his positive experience with others by analyzing some data related to vaccination and its effects on commun...
### **Sub-problem A** - **Unvaccinated population**: 70% of 1,000 = 700 senior citizens. Expected infections without vaccination: \(0.25 \times 700 = 175\). - **Vaccinated population**: 30% of 1,000 = 300 senior citizens. Expected infections after vaccination: \(0.05 \times 300 = 15\). - **Total expected ...
[ { "content": "A fellow senior citizen named Alex was initially skeptical about getting vaccinated. After extensive research and observing the positive effects on his friends, Alex decided to get vaccinated. Alex wants to share his positive experience with others by analyzing some data related to vaccination and...
1
[ "count:count_increment_word" ]
[{"keyword1": "stomach", "keyword2": "shine"}]
ifeval
personahub_la6dqy5pgdjxo8vb6ce6xc76
multi
0
A fellow senior citizen named Alex was initially skeptical about getting vaccinated. After extensive research and observing the positive effects on his friends, Alex decided to get vaccinated. Alex wants to share his positive experience with others by analyzing some data related to vaccination and its effects on commun...
**Sub-problem A**: - **Unvaccinated group**: Number of unvaccinated senior citizens = 1,000 × (1 - 0.70) = 300 Expected number infected = 300 × 0.25 = 75 - **Vaccinated group**: Number of vaccinated senior citizens = 1,000 × 0.70 = 700 Expected number infected = 700 × 0.05 = 35 **Total expected ...
[ { "content": "A fellow senior citizen named Alex was initially skeptical about getting vaccinated. After extensive research and observing the positive effects on his friends, Alex decided to get vaccinated. Alex wants to share his positive experience with others by analyzing some data related to vaccination and...
1
[ "count:count_increment_word" ]
[{"keyword1": "stomach", "keyword2": "shine"}]
ifeval
personahub_la6dqy5pgdjxo8vb6ce6xc76
multi
0
A fellow senior citizen named Alex was initially skeptical about getting vaccinated. After extensive research and observing the positive effects on his friends, Alex decided to get vaccinated. Alex wants to share his positive experience with others by analyzing some data related to vaccination and its effects on commun...
**Sub-problem A**: The probability of infection without vaccination is 0.25, so for 700 vaccinated seniors (70% of 1,000), the expected number is \(700 \times 0.05 = 35\). For the 300 unvaccinated seniors, the expected number is \(300 \times 0.25 = 75\). The sum of these expected values is \(35 + 75 = 110\). **Sub-...
[ { "content": "A fellow senior citizen named Alex was initially skeptical about getting vaccinated. After extensive research and observing the positive effects on his friends, Alex decided to get vaccinated. Alex wants to share his positive experience with others by analyzing some data related to vaccination and...
1
[ "count:count_increment_word" ]
[{"keyword1": "stomach", "keyword2": "shine"}]
ifeval
personahub_la6dqy5pgdjxo8vb6ce6xc76
multi
0
A fellow senior citizen named Alex was initially skeptical about getting vaccinated. After extensive research and observing the positive effects on his friends, Alex decided to get vaccinated. Alex wants to share his positive experience with others by analyzing some data related to vaccination and its effects on commun...
**Sub-problem A** 1. Calculate the expected number of infections among vaccinated and unvaccinated senior citizens. - **Unvaccinated group**: Number of unvaccinated senior citizens = 1000 * (1 - 70%) = 300. Expected infections = 300 * 0.25 = 75. - **Vaccinated group**: Number of vaccina...
[ { "content": "A fellow senior citizen named Alex was initially skeptical about getting vaccinated. After extensive research and observing the positive effects on his friends, Alex decided to get vaccinated. Alex wants to share his positive experience with others by analyzing some data related to vaccination and...
1
[ "count:count_increment_word" ]
[{"keyword1": "stomach", "keyword2": "shine"}]
ifeval
personahub_la6dqy5pgdjxo8vb6ce6xc76
multi
0
A fellow senior citizen named Alex was initially skeptical about getting vaccinated. After extensive research and observing the positive effects on his friends, Alex decided to get vaccinated. Alex wants to share his positive experience with others by analyzing some data related to vaccination and its effects on commun...
To solve **Sub-problem A**, we need to calculate the expected number of infected senior citizens in both the vaccinated and unvaccinated groups, then sum these values. 1. **Unvaccinated group**: - Total senior citizens: 1,000 - Percentage not vaccinated: 100% - 70% = 30% - Number of unvaccinated citizens: \(1...
[ { "content": "A fellow senior citizen named Alex was initially skeptical about getting vaccinated. After extensive research and observing the positive effects on his friends, Alex decided to get vaccinated. Alex wants to share his positive experience with others by analyzing some data related to vaccination and...
1
[ "count:count_increment_word" ]
[{"keyword1": "stomach", "keyword2": "shine"}]
ifeval
personahub_la6dqy5pgdjxo8vb6ce6xc76
multi
0
A fellow senior citizen named Alex was initially skeptical about getting vaccinated. After extensive research and observing the positive effects on his friends, Alex decided to get vaccinated. Alex wants to share his positive experience with others by analyzing some data related to vaccination and its effects on commun...
**Sub-problem A**: 1. **Unvaccinated Group**: - Number of unvaccinated senior citizens = \(1000 \times (1 - 0.7) = 300\). - Probability of infection for unvaccinated = \(0.25\). - Expected number of infections = \(300 \times 0.25 = 75\). 2. **Vaccinated Group**: - Number of vaccinated senior ci...
[ { "content": "A fellow senior citizen named Alex was initially skeptical about getting vaccinated. After extensive research and observing the positive effects on his friends, Alex decided to get vaccinated. Alex wants to share his positive experience with others by analyzing some data related to vaccination and...
1
[ "count:count_increment_word" ]
[{"keyword1": "stomach", "keyword2": "shine"}]
ifeval
personahub_la6dqy5pgdjxo8vb6ce6xc76
multi
0
A fellow senior citizen named Alex was initially skeptical about getting vaccinated. After extensive research and observing the positive effects on his friends, Alex decided to get vaccinated. Alex wants to share his positive experience with others by analyzing some data related to vaccination and its effects on commun...
### **Sub-problem A:** 1. **Calculate the expected number of unvaccinated individuals who would get infected:** - **Total senior citizens**: 1,000 - **Percentage vaccinated**: 70% - **Number vaccinated**: \(0.70 \times 1,000 = 700\) - **Number unvaccinated**: \(1,000 - 700 = 300\) - **Probability of inf...
[ { "content": "A fellow senior citizen named Alex was initially skeptical about getting vaccinated. After extensive research and observing the positive effects on his friends, Alex decided to get vaccinated. Alex wants to share his positive experience with others by analyzing some data related to vaccination and...
1
[ "count:count_increment_word" ]
[{"keyword1": "stomach", "keyword2": "shine"}]
ifeval
personahub_la6dqy5pgdjxo8vb6ce6xc76
multi
0
Write a program that rotates a matrix 90 degrees counterclockwise without using any additional memory. Your entire response should be in English, and in all lowercase letters. No capital letters are allowed. There should be 2 paragraphs. Paragraphs are separated with the markdown divider: *** The first word of each sen...
junior to solve this problem we need a method that can transform a given matrix by rotating its elements 90 degrees counterclockwise without needing extra space to store the rotated values junior this requirement means we have to rearrange the matrix in place junior one common approach to achieve this is layer by layer...
[ { "content": "Write a program that rotates a matrix 90 degrees counterclockwise without using any additional memory. Your entire response should be in English, and in all lowercase letters. No capital letters are allowed. There should be 2 paragraphs. Paragraphs are separated with the markdown divider: *** The ...
1
[ "change_case:english_lowercase", "paragraphs:paragraphs", "first_word:first_word_sent" ]
[{}, {}, {"first_word": "junior"}]
ifeval
ai2-adapt-dev/evol_codealpaca_heval_decontaminated_4573
multi
0
Write a program that rotates a matrix 90 degrees counterclockwise without using any additional memory. Your entire response should be in English, and in all lowercase letters. No capital letters are allowed. There should be 2 paragraphs. Paragraphs are separated with the markdown divider: *** The first word of each sen...
junior to rotate a matrix 90 degrees counterclockwise without extra memory we can use a few steps the concept is to first reverse each row of the given matrix we can achieve this with a for loop that iterates over each row in the matrix then for each row another loop reverses the elements in that row junior after this ...
[ { "content": "Write a program that rotates a matrix 90 degrees counterclockwise without using any additional memory. Your entire response should be in English, and in all lowercase letters. No capital letters are allowed. There should be 2 paragraphs. Paragraphs are separated with the markdown divider: *** The ...
1
[ "change_case:english_lowercase", "paragraphs:paragraphs", "first_word:first_word_sent" ]
[{}, {}, {"first_word": "junior"}]
ifeval
ai2-adapt-dev/evol_codealpaca_heval_decontaminated_4573
multi
0
Write a program that rotates a matrix 90 degrees counterclockwise without using any additional memory. Your entire response should be in English, and in all lowercase letters. No capital letters are allowed. There should be 2 paragraphs. Paragraphs are separated with the markdown divider: *** The first word of each sen...
junior to solve this problem we use a concept called transpose and then reverse rows junior because rotating a matrix ninety degrees counterclockwise is equivalent to first transposing the matrix junior and then reversing the rows of the transposed matrix junior this method does not require additional memory as it modi...
[ { "content": "Write a program that rotates a matrix 90 degrees counterclockwise without using any additional memory. Your entire response should be in English, and in all lowercase letters. No capital letters are allowed. There should be 2 paragraphs. Paragraphs are separated with the markdown divider: *** The ...
1
[ "change_case:english_lowercase", "paragraphs:paragraphs", "first_word:first_word_sent" ]
[{}, {}, {"first_word": "junior"}]
ifeval
ai2-adapt-dev/evol_codealpaca_heval_decontaminated_4573
multi
0
Write a program that rotates a matrix 90 degrees counterclockwise without using any additional memory. Your entire response should be in English, and in all lowercase letters. No capital letters are allowed. There should be 2 paragraphs. Paragraphs are separated with the markdown divider: *** The first word of each sen...
junior to achieve this we can manipulate the elements of the input matrix in place by swapping elements systematically we start from the top left corner of the matrix moving diagonally downwards left to right the key idea is to observe how elements in a specific position change after rotation for instance if we take th...
[ { "content": "Write a program that rotates a matrix 90 degrees counterclockwise without using any additional memory. Your entire response should be in English, and in all lowercase letters. No capital letters are allowed. There should be 2 paragraphs. Paragraphs are separated with the markdown divider: *** The ...
1
[ "change_case:english_lowercase", "paragraphs:paragraphs", "first_word:first_word_sent" ]
[{}, {}, {"first_word": "junior"}]
ifeval
ai2-adapt-dev/evol_codealpaca_heval_decontaminated_4573
multi
0
Write a program that rotates a matrix 90 degrees counterclockwise without using any additional memory. Your entire response should be in English, and in all lowercase letters. No capital letters are allowed. There should be 2 paragraphs. Paragraphs are separated with the markdown divider: *** The first word of each sen...
junior to solve this problem we need to understand the relationship between the positions of elements before and after rotation junior for a square matrix with side length n junior the element at position (i j) moves to the position (j n−1−i) after the rotation junior note the flipping of the second coordinate and the ...
[ { "content": "Write a program that rotates a matrix 90 degrees counterclockwise without using any additional memory. Your entire response should be in English, and in all lowercase letters. No capital letters are allowed. There should be 2 paragraphs. Paragraphs are separated with the markdown divider: *** The ...
1
[ "change_case:english_lowercase", "paragraphs:paragraphs", "first_word:first_word_sent" ]
[{}, {}, {"first_word": "junior"}]
ifeval
ai2-adapt-dev/evol_codealpaca_heval_decontaminated_4573
multi
0
Write a program that rotates a matrix 90 degrees counterclockwise without using any additional memory. Your entire response should be in English, and in all lowercase letters. No capital letters are allowed. There should be 2 paragraphs. Paragraphs are separated with the markdown divider: *** The first word of each sen...
junior to rotate a matrix 90 degrees counterclockwise without extra memory we need to manipulate the elements in place junior we can achieve this by transposing the matrix and then reversing each row junior to transpose we swap row i column j with row j column i junior after transposing we reverse each row to get the 9...
[ { "content": "Write a program that rotates a matrix 90 degrees counterclockwise without using any additional memory. Your entire response should be in English, and in all lowercase letters. No capital letters are allowed. There should be 2 paragraphs. Paragraphs are separated with the markdown divider: *** The ...
1
[ "change_case:english_lowercase", "paragraphs:paragraphs", "first_word:first_word_sent" ]
[{}, {}, {"first_word": "junior"}]
ifeval
ai2-adapt-dev/evol_codealpaca_heval_decontaminated_4573
multi
0
Write a program that rotates a matrix 90 degrees counterclockwise without using any additional memory. Your entire response should be in English, and in all lowercase letters. No capital letters are allowed. There should be 2 paragraphs. Paragraphs are separated with the markdown divider: *** The first word of each sen...
junior to rotate a matrix 90 degrees counterclockwise without using additional memory junior we can use the transpose method junior first we take the transpose of the matrix junior which means we swap each element with its corresponding value along the diagonal junior after transposing junior we then reverse each row i...
[ { "content": "Write a program that rotates a matrix 90 degrees counterclockwise without using any additional memory. Your entire response should be in English, and in all lowercase letters. No capital letters are allowed. There should be 2 paragraphs. Paragraphs are separated with the markdown divider: *** The ...
1
[ "change_case:english_lowercase", "paragraphs:paragraphs", "first_word:first_word_sent" ]
[{}, {}, {"first_word": "junior"}]
ifeval
ai2-adapt-dev/evol_codealpaca_heval_decontaminated_4573
multi
0
- [Tiny spores that land in a sport would not grow.] [Sentence B] + [Of the following two sentences, which one is against common sense? Options: - Sentence A: "If tiny spores land in a good spot, they grow." - Sentence B: "If tiny spores land in a good sport, they grow." ] - [It is not possible to call on an iron.] [S...
Sentence B goes against common sense because spiders are not insects they do not have hands or brains and therefore cannot play xbox
[ { "content": "- [Tiny spores that land in a sport would not grow.]\n[Sentence B]\n+ [Of the following two sentences, which one is against common sense?\nOptions:\n- Sentence A: \"If tiny spores land in a good spot, they grow.\"\n- Sentence B: \"If tiny spores land in a good sport, they grow.\"\n]\n\n- [It is no...
1
[ "detectable_format:sentence_hyphens" ]
[{}]
ifeval
ai2-adapt-dev/flan_v2_converted_58547
multi
0
End of preview. Expand in Data Studio

IF Oracle SFT

Oracle instruction-following SFT data built by rejection sampling from willhx/Qwen3-8B-Base-IF.

How it was made

  • Policy: willhx/Qwen3-8B-Base-IF (a trained IF RL checkpoint).
  • Prompts: the full allenai/IF_multi_constraints_upto5-derived training set (IF_multi_constraints_upto5_ifbench_en, 88,832 prompts covered).
  • Sampling: 8 responses per prompt, temperature 1.0, max 8192 response tokens (rollout via slime + SGLang, --debug-rollout-only).
  • Reward: rule-based IFEval-G (rm_type=multi) — the fraction of the prompt's instruction constraints that a response satisfies.
  • Oracle filter: only responses with reward == 1.0 (ALL constraints satisfied) are kept. A prompt may contribute multiple oracle responses.

Columns

column description
prompt user instruction (clean text)
response model response that satisfies all constraints
messages [{user}, {assistant}] chat form of the pair
reward always 1.0 (oracle)
instruction_id_list IFEval-G instruction ids the prompt imposes
kwargs JSON string of per-instruction arguments
source, record_id, rm_type provenance from the source dataset
rollout_id which rollout batch the sample came from

Load

from datasets import load_dataset
ds = load_dataset("willhx/if_oracle_sft", split="train")
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