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School of Engineering and Informatics (for staff and students)

Engineering Maths 1A (H1033)

Engineering Maths 1A

Module H1033

Module details for 2022/23.

15 credits

FHEQ Level 4

Library

Helping Engineers Learn Mathematics (HELM); helm@lboro.ac.uk
Bostock and Chandler, Pure Mathematics Volume 1, Nelson Thornes Ltd

Module Outline

Module Outline
The Engineering Maths 1A module is the first of two modules in Year 1, with Engineering Maths
1B taking place in the Spring semester. It builds on mathematics studied at GCSE and A level, or
equivalent, and is mostly revision of familiar topics, though for a few students some of the material
will be new. The aim of the module is to consolidate mathematical understanding and technical
proficiency in a range of areas, in order to form a sound basis for the mathematics relating to
engineering and physical processes in the modules to come.

Module Topics
Revision of exponential and logarithmic functions, and partial fractions; trigonometric identities
and their application to waves; complex numbers and the rules of complex algebra in Cartesian,
polar and exponential forms, De Moivre’s Theorem; basic concepts of vectors, scalar and vector
products, application of vectors to geometric problems involving lines and planes; matrix manipulation,
determinants and inverses, solution of simultaneous equations in matrix vector form,
Gaussian Elimination, Cramer’s Rule; differentiation from first principles, derivatives of functions
of a single variable (explicit, implicit and parametric), curvature and radius of curvature; partial
derivatives of functions of several variables, classification of stationary points; integration techniques
for indefinite and definite integrals, integration as the limit of a sum, mean value and root
mean square value of a function, arc length, volume, and surface area of revolution integrals

AHEP4 Learning Outcomes
C1, C2, C3, M1, M2, M3

Module learning outcomes

Have a good capability to manipulate complicated algebraic expressions

Perform differential and integral calculus on a single variable

Manipulate complex numbers and have an appreciation of their applications in engineering analysis

Perform differential and integral calculus on more than one variable and have an appreciation of its applications in engineering analysis

TypeTimingWeighting
Coursework20.00%
Coursework components. Weighted as shown below.
Problem SetT1 Week 7 50.00%
Problem SetT1 Week 10 50.00%
Computer Based ExamSemester 1 Assessment80.00%
Timing

Submission deadlines may vary for different types of assignment/groups of students.

Weighting

Coursework components (if listed) total 100% of the overall coursework weighting value.

TermMethodDurationWeek pattern
Autumn SemesterLecture1 hour33333033333
Autumn SemesterWorkshop1 hour01111011110

How to read the week pattern

The numbers indicate the weeks of the term and how many events take place each week.

Dr Carole Becker

Assess convenor
/profiles/103997

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The University reserves the right to make changes to the contents or methods of delivery of, or to discontinue, merge or combine modules, if such action is reasonably considered necessary by the University. If there are not sufficient student numbers to make a module viable, the University reserves the right to cancel such a module. If the University withdraws or discontinues a module, it will use its reasonable endeavours to provide a suitable alternative module.

School of Engineering and Informatics (for staff and students)

School Office:
School of Engineering and Informatics, ºÚÁÏÍø, Chichester 1 Room 002, Falmer, Brighton, BN1 9QJ
ei@sussex.ac.uk
T 01273 (67) 8195

School Office opening hours: School Office open Monday – Friday 09:00-15:00, phone lines open Monday-Friday 09:00-17:00
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