D Determine interior/exterior regions in the shape using the even-odd rule. D A E J 1. interior F 2. exterior H. C B. > > > > > > > >
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Q: { int x, y = 1; For(x=0; x<50; x+ =5) { cout << x << “ “<<y; y ++; }}
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- Please explain what is exactly inside the pictureDesign the following given form using html tags.# Write your codes here.print("Pizza Count:", Pizza.pizza_count)print("=======================")p1 = Pizza("Chicken")p1.set_toppings_info(25, 1, 4, 0)p1.display()print("------------------------------------")p2 = Pizza("Olives")p2.set_toppings_info(15, 1.5, 0, 0)p2.display()print("------------------------------------")p3 = Pizza("Sausage")p3.set_toppings_info(50, 5, 2, 0)p3.display()print("=======================")print("Pizza Count:", Pizza.pizza_count)Output:Pizza Count: 0=======================Toppings: Chicken25 calories1 g fat4 g protein0 g carbs------------------------------------Toppings: Olives15 calories1.5 g fat0 g protein0 g carbs------------------------------------Toppings: Sausage50 calories5 g fat2 g protein0 g carbs=======================Pizza Count: 3
- Convert the following infix expressions into their corresponding prefix forms as shown by the screenshot below. The second screenshot show all possible answer for each part of the question, match the correct answer to each question accordingly.Please modify the given code based on the directions given. #include <iostream> #include <glad/gl.h> #include <GLM/glm.hpp>#include <GLFW/glfw3.h> #include "learnopengl/shader.h" #include "cs4722/x11.h" const auto number_of_vertices = 3; const unsigned int color_loc = 1; const auto b_position = 1; static const auto background_color = cs4722::x11::gray70; auto const verts_per_triangle = 3; glm::vec4 positions0[] = { glm::vec4(-.5, .8, 0, 1), glm::vec4(-.8, .2,0, 1), glm::vec4(-.2, .2, 0, 1)};auto size0 = 4 * 4 * verts_per_triangle;auto offset0 = 0;auto bOffset0 = 0;auto color0 = cs4722::x11::medium_violet_red; glm::vec4 positions1[] = { glm::vec4(.5, .8, 0, 1), glm::vec4(.2, .2,0, 1), glm::vec4(.8, .2, 0, 1)};auto size1 = 4 * 4 * verts_per_triangle;auto offset1 = offset0 + verts_per_triangle;auto bOffset1 = bOffset0 + size0;auto color1 = cs4722::x11::slate_blue; glm::vec4 positions2[] = { glm::vec4(.5, -.2, 0, 1),…What is the formula to convert a Cartesian X-coordinate to screen pixel coordinates? (Use the variable sx forthe screen column, and use sOrigX for the screen column where the Cartesian origin point (0, 0) is located.)