
NEW PERSP.ON COMP.CONCEPTS-PACKAGE
17th Edition
ISBN: 9781337761116
Author: Carey
Publisher: CENGAGE L
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Question
Chapter 11, Problem 7CP1
a)
Program Plan Intro
To create a function turnOffStars() and declaring a star variable,containing the object collect referenced by the selector span#starsimg.
b)
Program Plan Intro
To declare the loop for the star collection and changing the src attributes of each image to the bw_star.png file.
b)
Program Plan Intro
To change the value of rating input box to empty text string if no stars are selected or lighted.
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I need help to solve a simple problem using Grover’s algorithm, where the solution is not necessarily known beforehand. The problem is a 2×2 binary sudoku with two rules:
• No column may contain the same value twice.
• No row may contain the same value twice.
Each square in the sudoku is assigned to a variable as follows:
We want to design a quantum circuit that outputs a valid solution to this sudoku. While using Grover’s algorithm for this task is not necessarily practical, the goal is to demonstrate how classical decision problems can be converted into oracles for Grover’s algorithm.
Turning the Problem into a Circuit
To solve this, an oracle needs to be created that helps identify valid solutions. The first step is to construct a classical function within a quantum circuit that checks whether a given state satisfies the sudoku rules.
Since we need to check both columns and rows, there are four conditions to verify:
v0 ≠ v1 # Check top row
v2 ≠ v3 # Check bottom row…
I need help to solve a simple problem using Grover’s algorithm, where the solution is not necessarily known beforehand. The problem is a 2×2 binary sudoku with two rules:
• No column may contain the same value twice.
• No row may contain the same value twice.
Each square in the sudoku is assigned to a variable as follows:
We want to design a quantum circuit that outputs a valid solution to this sudoku. While using Grover’s algorithm for this task is not necessarily practical, the goal is to demonstrate how classical decision problems can be converted into oracles for Grover’s algorithm.
Turning the Problem into a Circuit
To solve this, an oracle needs to be created that helps identify valid solutions. The first step is to construct a classical function within a quantum circuit that checks whether a given state satisfies the sudoku rules.
Since we need to check both columns and rows, there are four conditions to verify:
v0 ≠ v1 # Check top row
v2 ≠ v3 # Check bottom row…
Chapter 11 Solutions
NEW PERSP.ON COMP.CONCEPTS-PACKAGE
Ch. 11.1 - Prob. 1QCCh. 11.1 - Prob. 2QCCh. 11.3 - Provide the general code to create a function...Ch. 11.3 - Prob. 2QCCh. 11 - Prob. 1RACh. 11 - Prob. 2RACh. 11 - Prob. 3RACh. 11 - Prob. 4RACh. 11 - Prob. 5RACh. 11 - Prob. 6RA
Ch. 11 - Prob. 7RACh. 11 - Prob. 8RACh. 11 - Prob. 9RACh. 11 - Prob. 10RACh. 11 - Prob. 11RACh. 11 - Prob. 1CP1Ch. 11 - Prob. 2CP1Ch. 11 - Prob. 3CP1Ch. 11 - Prob. 4CP1Ch. 11 - Prob. 5CP1Ch. 11 - Prob. 6CP1Ch. 11 - Prob. 7CP1Ch. 11 - Prob. 8CP1Ch. 11 - Prob. 9CP1Ch. 11 - Prob. 2CP2Ch. 11 - Prob. 3CP2Ch. 11 - Prob. 5CP2Ch. 11 - Prob. 2CP3Ch. 11 - Prob. 3CP3Ch. 11 - Prob. 1CP4Ch. 11 - Prob. 2CP4Ch. 11 - Prob. 3CP4Ch. 11 - Prob. 4CP4Ch. 11 - Prob. 5CP4Ch. 11 - Prob. 6CP4Ch. 11 - Prob. 7CP4
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- I need help to solve a simple problem using Grover’s algorithm, where the solution is not necessarily known beforehand. The problem is a 2×2 binary sudoku with two rules: • No column may contain the same value twice. • No row may contain the same value twice. Each square in the sudoku is assigned to a variable as follows: We want to design a quantum circuit that outputs a valid solution to this sudoku. While using Grover’s algorithm for this task is not necessarily practical, the goal is to demonstrate how classical decision problems can be converted into oracles for Grover’s algorithm. Turning the Problem into a Circuit To solve this, an oracle needs to be created that helps identify valid solutions. The first step is to construct a classical function within a quantum circuit that checks whether a given state satisfies the sudoku rules. Since we need to check both columns and rows, there are four conditions to verify: v0 ≠ v1 # Check top row v2 ≠ v3 # Check bottom row…arrow_forwardDon't use ai to answer I will report you answerarrow_forwardYou can use Eclipse later for program verification after submission. 1. Create an abstract Animal class. Then, create a Cat class. Please implement all the methods and inheritance relations in the UML correctly: Animal name: String # Animal (name: String) + getName(): String + setName(name: String): void + toString(): String + makeSound(): void Cat breed : String age: int + Cat(name: String, breed: String, age: int) + getBreed(): String + getAge (): int + toString(): String + makeSound(): void 2. Create a public CatTest class with a main method. In the main method, create one Cat object and print the object using System.out.println(). Then, test makeSound() method. Your printing result must follow the example output: name: Coco, breed: Domestic short-haired, age: 3 Meow Meowarrow_forward
- Q2) by using SHI-Tomasi detector method under the constraints shown in fig. 1 below find the corner that is usful to use in video-steganography? 10.8 ...... V...... 0.7 286 720 ke Fig.1 Threshold graph. The plain test is :Hello Ahmed the key is: 3a 2x5 5b 7c 1J 55 44 2X3 [ ] 2x3arrow_forwardusing r languagearrow_forwardWhat disadvantages are there in implicit dereferencing of pointers, but only in certain contexts?arrow_forward
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