<--- Back to Details
First PageDocument Content
Matrix theory / Matrices / Abstract algebra / Matrix / Invertible matrix / Determinant / Inverse element / Euclidean vector / Trace / Algebra / Mathematics / Linear algebra
Date: 2008-07-17 19:39:05
Matrix theory
Matrices
Abstract algebra
Matrix
Invertible matrix
Determinant
Inverse element
Euclidean vector
Trace
Algebra
Mathematics
Linear algebra

EE263 Prof. S. Boyd

Add to Reading List

Source URL: see.stanford.edu

Download Document from Source Website

File Size: 36,10 KB

Share Document on Facebook

Similar Documents

I1 / Garbage collection

A Story of Parametric Trace Slicing, Garbage and Static Analysis Giles Reger School of Computer Science, University of Manchester, UK PrePost 2017

DocID: 1xW3e - View Document

Debugging / Logic in computer science / Runtime verification / Software optimization / Computing / Instrumentation / Tracing / Information technology management / Management

What is a Trace? A Runtime Verification Perspective Giles Reger1 1 2

DocID: 1xW0i - View Document

Succinct Representation of Concurrent Trace Sets ∗ Ashutosh Gupta

DocID: 1xVvk - View Document

Temporal logic / Formal languages / Logic / Metalogic / Mathematical logic / Linear temporal logic / Mathematics / Model theory / Symbol / Computation tree logic / Interpretation / Well-formed formula

From First-order Temporal Logic to Parametric Trace Slicing Giles Reger and David Rydeheard University of Manchester, Manchester, UK Abstract. Parametric runtime verification is the process of verifying properties of ex

DocID: 1xULF - View Document

Mathematics / Algebra / Theoretical computer science / Finite automata / Linear algebra / Finite-state transducer / Dynamic programming / Edit distance / Trace / Finite-state machine / Shortest path problem / Levenshtein distance

Suggesting Edits to Explain Failing Traces Giles Reger University of Manchester, UK Abstract. Runtime verification involves checking whether an execution trace produced by a running system satisfies a specification. Howe

DocID: 1xUmQ - View Document