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WGU Foundations-of-Computer-Science Exam Syllabus Topics:

SectionObjectives
Topic 1: Programming Foundations- Programming Concepts
  • 1. Control flow (if/else, loops)
    • 2. Basic pseudocode interpretation
      • 3. Variables, data types, expressions
        - Language Concepts Overview
        • 1. Compiled vs interpreted languages
          • 2. Programming paradigms overview
            Topic 2: Operating Systems & Architecture- System Architecture
            • 1. Von Neumann architecture basics
              • 2. Hardware vs software abstraction
                - OS Fundamentals
                • 1. Process states and scheduling basics
                  • 2. Memory management concepts
                    Topic 3: Computer Science Fundamentals- Data Structures Introduction
                    • 1. Arrays and lists
                      • 2. Basic sorting and searching concepts
                        - Core CS Concepts
                        • 1. Computational thinking and problem solving
                          • 2. Basic programming logic and algorithms
                            • 3. Algorithm efficiency and Big-O basics
                              Topic 4: Data & Security Basics- Security Fundamentals
                              • 1. Encryption basics (at rest vs in transit)
                                • 2. Basic cybersecurity threats and mitigation
                                  - Data Handling
                                  • 1. Basic database concepts overview
                                    • 2. Data profiling concepts

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                                      WGU Foundations of Computer Science Sample Questions (Q40-Q45):

                                      NEW QUESTION # 40
                                      Which Python function is used to display the data type of a given variable?

                                      Answer: A

                                      Explanation:
                                      Python is a dynamically typed language, meaning variables do not require explicit type declarations; instead, objects carry type information at runtime. To inspect the type of an object, Python provides the built-in function type(). When you pass a variable or value into type(), it returns the object's class, which represents its data type. For example, type(5) returns <class 'int'>, type(3.14) returns <class 'float'>, and type("hello") returns <class 'str'>. This is commonly used in debugging, learning exercises, and when writing functions that must behave differently depending on input types.
                                      Textbook discussions often pair type() with Python's object model: everything in Python is an object, and each object is an instance of some class. type() reveals that class. In addition, type() can be used in more advanced ways, such as dynamic class creation, but its foundational educational use is type inspection.
                                      The other options are not correct because GetVar(), Show(), and Data() are not standard Python built- ins for type checking. While developers can define functions with those names, they are not part of Python's core language or standard library in the sense required by the question. For typical coursework and professional Python usage, the correct and universally accepted function is type().


                                      NEW QUESTION # 41
                                      What is the built-in data structure that implements a hash table in Python?

                                      Answer: A

                                      Explanation:
                                      A hash table is a data structure that supports fast lookup, insertion, and deletion by using ahash functionto map keys to positions in an underlying storage structure. In Python, the built-in data structure that provides hash-table behavior is thedictionary, written with curly braces like {"a": 1, "b": 2}. Dictionaries store key- value pairs and are designed so that accessing a value by key, such as d["a"], is efficient on average.
                                      Textbooks typically describe this expected efficiency as average-case constant time, often written as O(1), assuming a good hash function and a well-managed table size.
                                      Tuples and lists are sequence types. Lists provide indexed access by integer position, not hashing by arbitrary keys. Tuples are immutable sequences and likewise do not provide key-based hashing semantics. "Array" is not the core built-in mapping structure in Python; while Python has an array module and NumPy has arrays, neither is the built-in hash table abstraction for general key-value storage.
                                      Python dictionaries require keys to be hashable, meaning the key's hash value is stable during its lifetime (common examples: strings, numbers, tuples of hashable items). This requirement is directly tied to hash-table implementation. Dictionaries are used throughout computer science applications:
                                      symbol tables in interpreters, caches and memoization, frequency counting, indexing, and implementing graphs via adjacency maps.


                                      NEW QUESTION # 42
                                      What is the correct way to convert an integer to a string in Python?

                                      Answer: C

                                      Explanation:
                                      Python provides built-in type conversion functions that construct a value of a target type from a supplied object when possible. To convert an integer to a string, Python uses the constructor function str(). For example, str(42) produces the string "42". This operation is fundamental in programming textbooks because it enables tasks like formatting output, concatenating numbers into messages, building file names, or preparing numeric values for text-based storage and transmission.
                                      Python distinguishes clearly between numeric types (int, float) and text type (str). You cannot concatenate an integer directly with a string (e.g., "Age: " + 30 raises a TypeError) because the types are different. Using str (30) resolves this by converting the integer into its string representation: "Age: " + str(30) becomes valid.
                                      Modern Python commonly uses f-strings (f"Age: {30}"), which perform conversion automatically, but str() remains the canonical and explicit method.
                                      Options A, B, and C are not standard Python built-ins for conversion. While some libraries define helper functions with similar names, the language's standard approach is str(...). Textbooks also highlight that str() is not limited to integers: it can convert many objects into readable string representations, often by invoking the object's __str__ method. This ties conversion to Python's object model and supports consistent display and logging across programs.


                                      NEW QUESTION # 43
                                      What is the first step in the selection sort algorithm?

                                      Answer: A

                                      Explanation:
                                      Selection sort works by growing a sorted portion of the list one element at a time. The algorithm conceptually divides the array into two regions: asorted prefixon the left and anunsorted suffixon the right. At the beginning, the sorted prefix is empty and the entire list is unsorted. The first step is to consider position 0 as the target location for the smallest element. The algorithm scans the unsorted region (initially the whole list) to find the smallest valueand records its index. That action is exactly what option C describes: determine the lowest value starting from the first position.
                                      After identifying the minimum element, selection sort swaps it into position 0 (if it isn't already there). Then it repeats the process for position 1, scanning the remaining unsorted suffix to find the next smallest element, swapping it into place, and so on. Textbooks emphasize that the key characteristic of selection sort is the repeated "select min (or max) from unsorted region and place it into the sorted region." Option A is not the standard first step; finding both min and max is unnecessary. Option B describes an unrelated swap that doesn't ensure progress toward sorting. Option D is not a "first step" but rather a different ordering goal; selection sort can be adapted for descending order, but the canonical version begins by selecting the minimum for the first position.


                                      NEW QUESTION # 44
                                      Which file system is commonly used in Windows and supports file permissions?

                                      Answer: C

                                      Explanation:
                                      Windows commonly uses the NTFS (New Technology File System) for internal drives and many external drives because it supports advanced features required for modern operating systems. One of the most important features is support forfile and folder permissionsvia Access Control Lists (ACLs). Permissions enable the OS to enforce security policies by controlling which users and groups can read, write, execute, modify, or delete specific resources. This is fundamental to multi-user security and is a standard topic in operating systems and security textbooks.
                                      FAT32 is an older file system designed for simplicity and broad compatibility. It does not provide the same fine-grained permission model as NTFS, which is why it is often used for removable media where cross- platform compatibility matters more than access control. HFS+ is historically associated with Apple's macOS systems, and EXT4 is widely used on Linux. While these file systems have their own permission and feature models, they are not the common Windows default for permission-managed storage in typical Windows deployments.
                                      NTFS also supports journaling (improving reliability after crashes), large file sizes, quotas, compression, and encryption features (through Windows facilities). In enterprise environments, NTFS permissions integrate with Windows authentication and directory services, enabling centralized user management. Therefore, for Windows systems requiring file permissions, NTFS is the correct answer.


                                      NEW QUESTION # 45
                                      ......

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