1986 results.
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Exam (1 question) in Content created by Newcastle University
Statistics and probability. Practice exam, one-way Anova for PSY2010.
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Exam (5 questions) in Content created by Newcastle University
Questions about logical predicates, and basic set theory concepts.
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Exam (6 questions) in Content created by Newcastle University
Practice questions on these topics.
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Exam (13 questions) in Content created by Newcastle University
Questions on matrix arithmetic.
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Exam (9 questions) in Content created by Newcastle UniversityQuestions used in a university course titled "Methods for solving differential equations"
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Exam (1 question) in Content created by Newcastle University
Statistics and probability. One question on multiple and partial correlation.
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Exam (8 questions) in Content created by Newcastle University
Questions about the limits of sequences from a first year pure maths course.
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Exam (2 questions) in Content created by Newcastle University
Solve a linear programming problem, and perform sensitivity analysis.
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Exam (2 questions) in Content created by Newcastle University
Find the first few terms of the Maclaurin and Taylor series of given functions.
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Exam (8 questions) in Content created by Newcastle University
Find an integral by choosing a suitable substitution.
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Exam (4 questions) in Content created by Newcastle University
Find the integral of an improper fraction.
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Exam (11 questions) in Content created by Newcastle University
Questions which rely on knowledge of standard integrals.
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Exam (2 questions) in Content created by Newcastle University
Determine the optimal frequency and size of orders given information about demand and prices.
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Exam (1 question) in Content created by Newcastle University
Apply the Kruskal-Wallis test on some data to determine if a measurement differs between groups.
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Exam (1 question) in Content created by Newcastle University
Find $\frac{\mathrm{d}y}{\mathrm{d}x}$ by differentiating an implicit equation.
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Exam (3 questions) in Content created by Newcastle University
Integrate various functions by rewriting them as partial fractions.
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Exam (6 questions) in Content created by Newcastle University
Integrate the product of two functions by the method of integration by parts.
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Exam (21 questions) in Content created by Newcastle UniversityQuestions used in a university course titled "Foundations of probability"
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Exam (9 questions) in Content created by Newcastle University
Use the quotient rule to differentiate various functions.
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Exam (9 questions) in Content created by Newcastle UniversityQuestions used in a university course titled "Enumeration and Combinatorics"
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Exam (51 questions) in Content created by Newcastle UniversityQuestions used in a university course titled "Foundation mathematics"
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Exam (4 questions) in Content created by Newcastle University
Questions on Pearson and Spearman correlation coefficients.
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Exam (4 questions) in Content created by Newcastle University
For given optimisation problems, determine maximin, maximax, and minimax regret actions, expected value criteria, expected value of perfect information.
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Exam (4 questions) in Content created by Newcastle University
Questions on differentiation from first principles, and continuity and differentiability.
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Exam (8 questions) in Content created by Newcastle University
Use the chain rule to differentiate various functions.
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Exam (11 questions) in Content created by Newcastle University
Use the product rule to differentiate various functions.
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Exam (2 questions) in Content created by Newcastle University
Use the Hungarian algorithm to find the optimal assignment of workers to tasks.
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Exam (1 question) in Content created by Newcastle University
Questions on the least upper bounds and greatest lower bounds of sets of the form $\{ f(x) : x \in \mathbb{Z} \text{ or } \mathbb{R} \}$.
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Exam (12 questions) in Content created by Newcastle UniversityQuestions used in a university course titled "Chaos theory"
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Exam (13 questions) in Content created by Newcastle University
Questions about complex arithmetic; argument and modulus of complex numbers; complex roots of polynomials; de Moivre's theorem.