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Interpreted language and Machine code

Shortcuts: Differences, Similarities, Jaccard Similarity Coefficient, References.

Difference between Interpreted language and Machine code

Interpreted language vs. Machine code

An interpreted language is a type of programming language for which most of its implementations execute instructions directly and freely, without previously compiling a program into machine-language instructions. Machine code is a computer program written in machine language instructions that can be executed directly by a computer's central processing unit (CPU).

Similarities between Interpreted language and Machine code

Interpreted language and Machine code have 16 things in common (in Unionpedia): Assembly language, BASIC, Bytecode, Central processing unit, Compiler, Computer hardware, Computer program, Emulator, Executable, Interpreter (computing), MATLAB, Perl, Programming language, Python (programming language), Ruby (programming language), Smalltalk.

Assembly language

An assembly (or assembler) language, often abbreviated asm, is a low-level programming language, in which there is a very strong (but often not one-to-one) correspondence between the assembly program statements and the architecture's machine code instructions.

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BASIC

BASIC (an acronym for Beginner's All-purpose Symbolic Instruction Code) is a family of general-purpose, high-level programming languages whose design philosophy emphasizes ease of use.

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Bytecode

Bytecode, also termed portable code or p-code, is a form of instruction set designed for efficient execution by a software interpreter.

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Central processing unit

A central processing unit (CPU) is the electronic circuitry within a computer that carries out the instructions of a computer program by performing the basic arithmetic, logical, control and input/output (I/O) operations specified by the instructions.

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Compiler

A compiler is computer software that transforms computer code written in one programming language (the source language) into another programming language (the target language).

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Computer hardware

Computer hardware includes the physical parts or components of a computer, such as the central processing unit, monitor, keyboard, computer data storage, graphic card, sound card and motherboard.

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Computer program

A computer program is a collection of instructions for performing a specific task that is designed to solve a specific class of problems.

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Emulator

In computing, an emulator is hardware or software that enables one computer system (called the host) to behave like another computer system (called the guest).

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Executable

In computing, executable code or an executable file or executable program, sometimes simply referred to as an executable or binary, causes a computer "to perform indicated tasks according to encoded instructions," as opposed to a data file that must be parsed by a program to be meaningful.

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Interpreter (computing)

In computer science, an interpreter is a computer program that directly executes, i.e. performs, instructions written in a programming or scripting language, without requiring them previously to have been compiled into a machine language program.

Interpreted language and Interpreter (computing) · Interpreter (computing) and Machine code · See more »

MATLAB

MATLAB (matrix laboratory) is a multi-paradigm numerical computing environment and proprietary programming language developed by MathWorks.

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Perl

Perl is a family of two high-level, general-purpose, interpreted, dynamic programming languages, Perl 5 and Perl 6.

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Programming language

A programming language is a formal language that specifies a set of instructions that can be used to produce various kinds of output.

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Python (programming language)

Python is an interpreted high-level programming language for general-purpose programming.

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Ruby (programming language)

Ruby is a dynamic, interpreted, reflective, object-oriented, general-purpose programming language.

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Smalltalk

Smalltalk is an object-oriented, dynamically typed, reflective programming language.

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The list above answers the following questions

Interpreted language and Machine code Comparison

Interpreted language has 88 relations, while Machine code has 73. As they have in common 16, the Jaccard index is 9.94% = 16 / (88 + 73).

References

This article shows the relationship between Interpreted language and Machine code. To access each article from which the information was extracted, please visit:

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