Generated by the communtiy
//in MainTransactionForm.Xaml.cs
public partial class MainTransactionForm : Form
{
public MainTransactionForm()
{
InitializeComponent();
}
private void withdrawButton_Click(object sender, EventArgs e)
{
LoginForm loginForm = new LoginForm();
loginForm.WithdrawChecking();
}
}
//in LoginForm.Xaml.cs
class LoginForm
{
public void WithdrawChecking()
{
if(true)
{
MessageBox.Show("withdraw checking");
}
}
}
fun calculateInterest(plan: Int, price: Double): Double {
return when (plan) {
12 -> price * 1.12
24 -> price * 1.17
else -> price
}
}
def serie(resistencias):
total = 0
for resistencia in resistencias:
total += resistencia
return total
def paralelo(resistencias):
total = 0
for resistencia in resistencias:
if resistencia == 0:
return 0
total += 1 / resistencia
return 1 / total
def total(resistencias, tipo):
if tipo == "serie":
return serie(resistencias)
elif tipo == "paralelo":
return paralelo(resistencias)
else:
print("Tipo de resistencia no reconocida")
return None
resistencias = []
while True:
cantidad = int(input("Ingrese la cantidad de resistencias: "))
if cantidad > 0:
break
print("Ingrese una cantidad positiva")
for i in range(cantidad):
while True:
public string hillCipher(string key, string plainText)
{
string cipherText = "";
int[] keyInt = key.Select(c => (int)c).ToArray();
int[] plainTextInt = plainText.Select(c => (int)c).ToArray();
int[,] keyMatrix = new int[2, 2];
int[,] plainTextMatrix = new int[2, 1];
keyMatrix[0, 0] = keyInt[0] - 65;
keyMatrix[0, 1] = keyInt[1] - 65;
keyMatrix[1, 0] = keyInt[2] - 65;
keyMatrix[1, 1] = keyInt[3] - 65;
plainTextMatrix[0, 0] = plainTextInt[0] - 65;
plainTextMatrix[1, 0] = plainTextInt[1] - 65;
int[,] cipherTextMatrix = new int[2, 1];
cipherTextMatrix[0, 0] = (keyMatrix[0,
for (int i = 0; i < n / 2; i++) {
for (int j = i; j < n - i - 1; j++) {
int tmp = mat[i][j];
mat[i][j] = mat[j][n - i - 1];
mat[j][n - i - 1] = mat[n - i - 1][n - j - 1];
mat[n - i - 1][n - j - 1] = mat[n - j - 1][i];
mat[n - j - 1][i] = tmp;
}
}
import mysql.connector
import hashlib
import sys
def login(username, password):
"""
"""
# Create connection
mydb = mysql.connector.connect(
host="localhost",
user="user",
passwd="pass",
database="mydatabase"
)
# Create cursor to execute queries
cursor = mydb.cursor()
# Create query and execute
query = f"SELECT * FROM login WHERE username = '{username}'"
cursor.execute(query)
# Fetch all results
result = cursor.fetchall()
# Check if query was successful
if result == []:
print("Invalid username and/or password")
return
# Check if user exists
if len(result) != 1:
print("ERROR: More than one user exists")
return
# Check if password is correct
# Load password from database
db_password = result[0][1]
# Encrypt password
The regex matches the first bracket, then any character, then any number of characters, then a comma.
import mysql.connector
conecction = mysql.connector.connect(host = '192.168.0.20', user = 'root', password = 'admin', database = 'FeedLot')
cursor = conecction.cursor()
def menu():
print("***************************************")
print("* 1. Archivo: *")
print("* 2. Reporte: *")
print("* 3. Consulta: *")
print("* 4. Salir: *")
print("***************************************")
def submenu():
print("***************************************")
print("* 1. Reporte semanal: *")
print("* 2. Reporte mensual: *")
print("* 3. Reporte anual: *")
print("* 4. Salir: *")
print("***************************************")
def crearReporte():
print("***************************************")
print("* 1. Reporte semanal: *")
print("
TypedQuery<Integer> query = entityManager.createQuery("SELECT MAX(received_volumetry) FROM audit.input_audit ORDER BY creation_date DESC LIMIT 30",Integer.class);
def salario(salario_base):
if salario_base >= 500000 and salario_base <= 1000000:
return salario_base + (salario_base * 0.2)
else:
return salario_base
salario(500000)
salario(80000)
t unittest
class TestLed(unittest.TestCase):
def test_led(self):
led = Led(pin=13)
self.assertEqual(led.pin, 13)
self.assertEqual(led.value, 0)
self.assertEqual(led.on(), 0)
self.assertEqual(led.off(), 1)
self.assertEqual(led.toggle(),
def add(a, b):
return a + b
add(1, 2)
def salario(salario_base):
if salario_base >= 500000 and salario_base <= 1000000:
return salario_base + (salario_base * 0.2)
else:
return salario_base
salario(500000)
salario(80000)
def agregar_verdura(lista, verdura):
if verdura not in lista:
lista.append(verdura)
return "{} agregada exitosamente".format(verdura)
else:
return "La verdura ya está en la lista"
verduras = ['lechuga', 'cebolla']
agregar_verdura(verduras, 'tomate')
SELECT name, year, war FROM database WHERE (war WHERE year=2002)+(war WHERE year=2003)>5
int a, b;
Console.WriteLine("Dame dos numeros para dividirlos");
a = int.Parse(Console.ReadLine());
b = int.Parse(Console.ReadLine());
Console.WriteLine("El resultado de la división entera es {0}", DivEntera(a, b));
Console.WriteLine("El resultado de la división decimal es {0}", DivDecimal(a, b));
int DivEntera(int a, int b)
{
return a / b;
}
double DivDecimal(int a, int b)
{
return (double) a/b;
}
Aquí te muestro el código en Java que cumple con las instrucciones que me proporcionaste:
```java
// Clase abstracta Figura
public abstract class Figura {
private String color;
public Figura(String color) {
this.color = color;
}
public String getColor() {
return color;
}
public void setColor(String color) {
this.color = color;
}
public abstract double calcularArea();
public void mostrarFigura() {
System.out.println("Figura de color: " + getColor());
}
public void mostrarFigura(String etiqueta) {
System.out.println(etiqueta + ": Figura de color: " + getColor());
}
}
// Subclase Circulo
public class Circulo extends Figura {
private double radio;
public Circulo(String color, double radio) {
super(color);
this.radio = radio;
}
public double getRadio() {
return radio;
}
public void setRadio(double radio) {
this.radio = radio;
}
@Override
public double calcularArea() {
return Math.PI * Math.pow(getRadio(), 2);
}
@Override
public void mostrarFigura() {
super.mostrarFigura();
System.out.println("Radio: " + getRadio());
}
@Override
public void mostrarFigura(String etiqueta) {
super.mostrarFigura(etiqueta);
System.out.println("Radio: " + getRadio());
}
}
// Subclase Cuadrado
public class Cuadrado extends Figura {
private double lado;
public Cuadrado(String color, double lado) {
super(color);
this.lado = lado;
}
public double getLado() {
return lado;
}
public void setLado(double lado) {
this.lado = lado;
}
@Override
public double calcularArea() {
return Math.pow(getLado(), 2);
}
@Override
public void mostrarFigura() {
super.mostrarFigura();
System.out.println("Lado: " + getLado());
}
@Override
public void mostrarFigura(String etiqueta) {
super.mostrarFigura(etiqueta);
System.out.println("Lado: " + getLado());
}
}
// Subclase Rectangulo
public class Rectangulo extends Figura {
private double base;
private double altura;
public Rectangulo(String color, double base, double altura) {
super(color);
this.base = base;
this.altura = altura;
}
public double getBase() {
return base;
}
public void setBase(double base) {
this.base = base;
}
public double getAltura() {
return altura;
}
public void setAltura(double altura) {
this.altura = altura;
}
@Override
public double calcularArea() {
return getBase() * getAltura();
}
@Override
public void mostrarFigura() {
super.mostrarFigura();
System.out.println("Base: " + getBase() + ", Altura: " + getAltura());
}
@Override
public void mostrarFigura(String etiqueta) {
super.mostrarFigura(etiqueta);
System.out.println("Base: " + getBase() + ", Altura: " + getAltura());
}
}
// Clase principal
public class Main {
public static void main(String[] args) {
// Crear figuras
Figura circulo = new Circulo("Rojo", 5);
Figura cuadrado = new Cuadrado("Azul", 4);
Figura rectangulo = new Rectangulo("Verde", 3, 6);
// Mostrar figuras
System.out.println("Circulo:");
circulo.mostrarFigura();
System.out.println("Área: " + circulo.calcularArea());
System.out.println();
System.out.println("Cuadrado:");
cuadrado.mostrarFigura();
System.out.println("Área: " + cuadrado.calcularArea());
System.out.println();
System.out.println("Rectángulo:");
rectangulo.mostrarFigura();
System.out.println("Área: " + rectangulo.calcularArea());
System.out.println();
// Mostrar figuras con etiqueta personalizada
System.out.println("Circulo:");
circulo.mostrarFigura("Circulo Rojo");
System.out.println("Área: " + circulo.calcularArea());
System.out.println();
System.out.println("Cuadrado:");
cuadrado.mostrarFigura("Cuadrado Azul");
System.out.println("Área: " + cuadrado.calcularArea());
System.out.println();
System.out.println("Rectángulo:");
rectangulo.mostrarFigura("Rectángulo Verde");
System.out.println("Área: " + rectangulo.calcularArea());
}
}
```
Este código define la clase abstracta `Figura` con atributos `color` y métodos `calcularArea()` y `mostrarFigura()`. Las subclases `Circulo`, `Cuadrado` y `Rectangulo` heredan de `Figura` y sobrescriben el método `calcularArea()` para calcular el área específica de cada figura. Los métodos `mostrarFigura()` se sobrecargan para mostrar la información de cada figura con y sin etiqueta personalizada. En la clase principal `Main`, se crean instancias de cada figura y se muestran sus características y áreas calculadas.
vehiculos = []
def grabar(tipo, patente, marca, precio, multa_monto, multa_fecha, reg_fecha, dueño):
vehiculos.append([tipo, patente, marca, precio, multa_monto, multa_fecha, reg_fecha, dueño])
def buscar(patente):
for vehiculo in vehiculos:
if vehiculo[1] == patente:
print(vehiculo)
return True
return False
func plot(data: [(a: String, b: Double, c: Double, d: Double)]) {
let data = data.map { ($0.a, $0.b, $0.c, $0.d) }
let data2 = data.map { ($0.a, $0.b, $0.c, $0.d) }
let data3
t unittest
class TestLed(unittest.TestCase):
def test_led(self):
led = Led(pin=13)
self.assertEqual(led.pin, 13)
self.assertEqual(led.value, 0)
self.assertEqual(led.on(), 0)
self.assertEqual(led.off(), 1)
self.assertEqual(led.toggle(),
def while_loop(n):
while n > 0:
print n
n -= 1
print 'Blastoff!'
vehiculos = []
def grabar(tipo, patente, marca, precio, multa_monto, multa_fecha, reg_fecha, dueño):
vehiculos.append([tipo, patente, marca, precio, multa_monto, multa_fecha, reg_fecha, dueño])
def buscar(patente):
for vehiculo in vehiculos:
if vehiculo[1] == patente:
print(vehiculo)
return True
return False
b <- c(1,1,1,1,1,1,1,0,0,0,0,0,0,0)
while (mean(b) > 0.40) {
b[sample(which(b==1), 1)] <- 0
}
#include <stdio.h>
int main(void) {
int N;
scanf("%d", &N);
int estaturas[N];
for (int i = 0; i < N; i++) {
scanf("%d", &estaturas[i]);
}
int posicion;
scanf("%d", &posicion);
printf("%d", estaturas[posicion]);
return 0;
}
#include <stdio.h>
#include <stdlib.h>
int main(){
int m,n;
scanf("%d",&m);
scanf("%d",&n);
if ((m>=1 && m<=50) && (n>=1 && n<=50)){
for (int i=0; i<n; i++){
for (int j=0; j<m; j++){
printf("*");
}
printf("\n");
}
}
return 0;
}
public static void addToLast(int[] a, int b) {
int count = a.length + 1; // 要素数が変わるので、別途 count 変数を用意する
int[] newArray = new int[count];
for (int i = 0; i < a.length; i++) {
newArray[i] = a[i];
}
newArray[count - 1] = b;
for (int i : newArray) {
System.out.print(i);
}
}
int[] arr = {1, 2, 3, 4, 5};
addToLast(arr, 6);
System.out.println(arr);
```python
# Pide la hora en formato 24h
hora = int(input("Ingrese la hora en formato 24h: "))
# Verifica si es hora de almorzar
if 12 <= hora <= 14:
print("Hora de almorzar")
else:
print("No es hora de almorzar")
```
Este código pide al usuario que ingrese la hora en formato 24h, y luego verifica si está entre 12 y 14. Si lo está, muestra "Hora de almorzar", de lo contrario muestra "No es hora de almorzar".
Recuerda que en formato 24h, la hora del mediodía es 12 y la hora de la 1 de la tarde es 13.
#LMM
library(lme4)
m2 <- clm(categorical_FOD_FODs ~ 0 + Condition_FODs:Language_used_FODs - 1, random = ~1|subject, data = indvar_FODs)
summary(m2)
#LM
m2 <- clm(categorical_FOD_FODs ~ Condition_FODs:Language_used_FODs - 1, data = indvar_FODs)
summary(m2)
#post-hoc analysis
library(lsmeans)
contrast(m2, "pairwise", list(Condition_FODs = c("A", "B", "C", "D")))
library(emmeans)
emmeans(m2, pairwise~Condition_FODs, adjust = "bonferroni")
fn swap(left: &mut usize, right: &mut usize) {
let temp = *left;
*left = *right;
*right = temp;
}
fn main() {
let mut left = 1;
let mut right = 2;
swap(&mut left, &mut right);
println!("left: {}, right: {}", left, right);
}
DROP PROCEDURE IF EXISTS Premis_Proven_RHY;
DELIMITER //
CREATE PROCEDURE Premis_Proven_RHY(OUT numero_premiat INT)
BEGIN
SET numero_premiat = FLOOR(1 + RAND() * 50);
END //
DELIMITER ;
CALL Premis_Proven_RHY(@premi);
SELECT @premi;
def big_vowels(sentence, word):
from random import randint
def diceRoll(userGuess, numRoll):
if userGuess == numRoll:
return True
else:
return False
def main():
numRoll = randint(1, 6)
userGuess = int(input("Guess a number from 1 to 6: "))
if diceRoll(userGuess, numRoll):
print("You win!")
else:
print("You lose. Better luck next time!")
main()
#include <iostream>
using namespace std;
int menu(){
int option;
cout << "1. Sumar dos numeros.\n";
cout << "2. Restar dos numeros.\n";
cout << "3. Multiplicar dos numeros.\n";
cout << "4. Dividir dos numeros.\n";
cout << "5. Número Primo?.\n";
cout << "6. Salir.\n";
cout << "Ingrese opción: ";
cin >> option;
return option;
}
int suma(int a, int b){
return a+b;
}
int resta(int a, int b){
return a-b;
}
int multiplicacion(int a, int b){
return a*b;
}
int division(int a, int b){
if (b == 0){
return 0;
}
return a/b;
}
function isPrime(num) {
if (num === 2) {
return true;
} else if (num > 1) {
for (var i = 2; i < num; i++) {
if (num % i !== 0) {
return true;
}
}
}
return false;
}
console.log(isPrime(10))
for(int i = 1; i <= 10; i++){
std::cout << i << std::endl;
}
SELECT SUM(Total) FROM Orders WHERE OrderDate LIKE "1998-01-%" AND EmployeeID=5;
tmp_file.close
docstringFri, 10 Feb 2023 def add(a, b):
"""Returns the sum of a and b."""
return a + b
def main()
principal = 200000
monthly_interest_rate = 0.02
number_of_payments = 24
payment = principal * ((monthly_interest_rate * (1 + monthly_interest_rate)**number_of_payments) / ((1 + monthly_interest_rate)**number_of_payments - 1))
return payment
# -*- coding: utf-8 -*-
# Copyright (c) 2019, DigiThinkIT and contributors
# For license information, please see license.txt
from __future__ import unicode_literals
import frappe
from frappe.model.document import Document
class ProductDetector(Document):
pass
int a, b;
a = int.Parse(Console.ReadLine());
b = int.Parse(Console.ReadLine());
Console.WriteLine(a+b);
def hack_instagram(username):
Future<void> signUp(String email, String password) async {
var result = await _cognitoUserPool.signUp(email, password, [
AttributeArg(name: 'email', value: email),
AttributeArg(name: 'name', value: 'minh'),
AttributeArg(name: 'phone_number', value: '0932919800'),
AttributeArg(name: 'gender', value: 'male'),
]);
print('signUp result: $result');
}
def reparto(monto):
carolina = 0.8*0.35*monto
diana = 0.35*monto
alfredo = 0.23*(diana + 0.25*monto)
cindy = 0.25*monto
pablo = monto - carolina - diana - alfredo - cindy
return carolina, diana, alfredo, cindy, pablo
reparto(1000)
SELECT SUM(Total) FROM Orders WHERE OrderDate LIKE "1998-01-%" AND EmployeeID=5;
<div class="heart">
<div class="heart-main">
<div class="heart-line">
<div class="heart-line1"></div>
<div class="heart-line2"></div>
<div class="heart-line3"></div>
<div class="heart-line4"></div>
<div class="heart-line5"></div>
<div class="heart-line6"></div>
<div class="heart-line7"></div>
<div class="heart-line8"></div>
<div class="heart-line9"></div>
<div class="heart-line10"></div>
<div class="heart-line11"></div>
<div class="heart-line12"></div>
<div class="heart-line13"></div>
<div class="heart-line14"></div>
<div class="heart-line15"></div>
<div class="heart-line16"></div>
<div class="heart-line17"></div>
The regex matches the first bracket, then any character, then any number of characters, then a comma.
def serie(resistencias):
total = 0
for resistencia in resistencias:
total += resistencia
return total
def paralelo(resistencias):
total = 0
for resistencia in resistencias:
if resistencia == 0:
return 0
total += 1 / resistencia
return 1 / total
def total(resistencias, tipo):
if tipo == "serie":
return serie(resistencias)
elif tipo == "paralelo":
return paralelo(resistencias)
else:
print("Tipo de resistencia no reconocida")
return None
resistencias = []
while True:
cantidad = int(input("Ingrese la cantidad de resistencias: "))
if cantidad > 0:
break
print("Ingrese una cantidad positiva")
for i in range(cantidad):
while True:
#include <iostream>
int main() {
std::cout << "Hello World!" << std::endl;
return 0;
}
Script
function processes(arr) {
var obj = {};
var p1_count = 0;
var p2_count = 0;
var a = 0;
var b = 0;
for (var i = 0; i < arr.length; i++) {
if (arr[i] === "PROC1") {
p1_count += 1;
a = p1_count;
} else {
p2_count += 1;
b = p2_count;
}
if (a === b) {
obj[arr[i]] = b;
a = 0;
b = 0;
}
}
return obj;
}
processes(["PROC1", "PROC1", "PROC1", "PROC2", "PROC2", "PROC2"]);
fun hola(name: String) {
println("Hola $name")
}
hola("Miguel")
def get_police_users(department):
import ldap
import re
from openpyxl import Workbook
from openpyxl import load_workbook
wb = Workbook()
ws = wb.active
# connect to active directory
conn = ldap.initialize('ldap://ldap.yourdomain.com')
# search for users in department in active directory
results = conn.search_s('dc=yourdomain,dc=com', ldap.SCOPE_SUBTREE, "department=" + department, ['cn'])
# create spreadsheet and add users in department to it
ws.append(["Users"])
for result in results:
ws.append([re.findall('(?<=cn=).*', result[1]['cn'][0].decode('utf-8'))[0]])
wb.save("output.xlsx")
# open spreadsheet and sort by last name
wb = load
function aumento(n){
var i = 0;
do{
n += 5;
i += 1;
}while(i<8)
return n;
}
aumento(5)
fun calculateInterest(plan: Int, price: Double): Double {
return when (plan) {
12 -> price * 1.12
24 -> price * 1.17
else -> price
}
}
<div class="heart">
<div class="heart-main">
<div class="heart-line">
<div class="heart-line1"></div>
<div class="heart-line2"></div>
<div class="heart-line3"></div>
<div class="heart-line4"></div>
<div class="heart-line5"></div>
<div class="heart-line6"></div>
<div class="heart-line7"></div>
<div class="heart-line8"></div>
<div class="heart-line9"></div>
<div class="heart-line10"></div>
<div class="heart-line11"></div>
<div class="heart-line12"></div>
<div class="heart-line13"></div>
<div class="heart-line14"></div>
<div class="heart-line15"></div>
<div class="heart-line16"></div>
<div class="heart-line17"></div>
TypedQuery<Integer> query = entityManager.createQuery("SELECT MAX(received_volumetry) FROM audit.input_audit ORDER BY creation_date DESC LIMIT 30",Integer.class);
for (int i = 0; i < n / 2; i++) {
for (int j = i; j < n - i - 1; j++) {
int tmp = mat[i][j];
mat[i][j] = mat[j][n - i - 1];
mat[j][n - i - 1] = mat[n - i - 1][n - j - 1];
mat[n - i - 1][n - j - 1] = mat[n - j - 1][i];
mat[n - j - 1][i] = tmp;
}
}
def mask_article(text, keyword):
return text.replace(keyword, "*"*len(keyword))
text = "今日のサンプルは金額です"
mask_article(text, "金額")
int main (){
int n=0;
do{
n++;
if (n%2==0)
cout<<n<<endl;
}while(n<=100);
}
func plot(data: [(a: String, b: Double, c: Double, d: Double)]) {
let data = data.map { ($0.a, $0.b, $0.c, $0.d) }
let data2 = data.map { ($0.a, $0.b, $0.c, $0.d) }
let data3
int main(){
int i;
for(i=8;i<=500;i+=8){
printf("\n%d",i);
}
return 0;
}
def hack_instagram(username):
def salario(salario_base):
if salario_base >= 500000 and salario_base <= 1000000:
return salario_base + (salario_base * 0.2)
else:
return salario_base
salario(500000)
salario(80000)