diff --git a/lab-python-data-structures.ipynb b/lab-python-data-structures.ipynb
index 5b3ce9e0..5051b144 100644
--- a/lab-python-data-structures.ipynb
+++ b/lab-python-data-structures.ipynb
@@ -1,76 +1,180 @@
{
- "cells": [
- {
- "cell_type": "markdown",
- "metadata": {
- "tags": []
- },
- "source": [
- "# Lab | Data Structures "
- ]
+ "cells": [
+ {
+ "cell_type": "markdown",
+ "metadata": {
+ "id": "view-in-github",
+ "colab_type": "text"
+ },
+ "source": [
+ "
"
+ ]
+ },
+ {
+ "cell_type": "markdown",
+ "source": [],
+ "metadata": {
+ "id": "W0tbr8MDof2U"
+ }
+ },
+ {
+ "cell_type": "markdown",
+ "metadata": {
+ "tags": [],
+ "id": "SoPBalionTrk"
+ },
+ "source": [
+ "# Lab | Data Structures"
+ ]
+ },
+ {
+ "cell_type": "markdown",
+ "metadata": {
+ "id": "_wWoQSPznTro"
+ },
+ "source": [
+ "## Exercise: Managing Customer Orders\n",
+ "\n",
+ "As part of a business venture, you are starting an online store that sells various products. To ensure smooth operations, you need to develop a program that manages customer orders and inventory.\n",
+ "\n",
+ "Follow the steps below to complete the exercise:\n",
+ "\n",
+ "1. Define a list called `products` that contains the following items: \"t-shirt\", \"mug\", \"hat\", \"book\", \"keychain\".\n",
+ "\n",
+ "2. Create an empty dictionary called `inventory`.\n",
+ "\n",
+ "3. Ask the user to input the quantity of each product available in the inventory. Use the product names from the `products` list as keys in the `inventory` dictionary and assign the respective quantities as values.\n",
+ "\n",
+ "4. Create an empty set called `customer_orders`.\n",
+ "\n",
+ "5. Ask the user to input the name of three products that a customer wants to order (from those in the products list, meaning three products out of \"t-shirt\", \"mug\", \"hat\", \"book\" or \"keychain\". Add each product name to the `customer_orders` set.\n",
+ "\n",
+ "6. Print the products in the `customer_orders` set.\n",
+ "\n",
+ "7. Calculate the following order statistics:\n",
+ " - Total Products Ordered: The total number of products in the `customer_orders` set.\n",
+ " - Percentage of Products Ordered: The percentage of products ordered compared to the total available products.\n",
+ " \n",
+ " Store these statistics in a tuple called `order_status`.\n",
+ "\n",
+ "8. Print the order statistics using the following format:\n",
+ " ```\n",
+ " Order Statistics:\n",
+ " Total Products Ordered: \n",
+ " Percentage of Products Ordered: %\n",
+ " ```\n",
+ "\n",
+ "9. Update the inventory by subtracting 1 from the quantity of each product. Modify the `inventory` dictionary accordingly.\n",
+ "\n",
+ "10. Print the updated inventory, displaying the quantity of each product on separate lines.\n",
+ "\n",
+ "Solve the exercise by implementing the steps using the Python concepts of lists, dictionaries, sets, and basic input/output operations."
+ ]
+ },
+ {
+ "cell_type": "markdown",
+ "source": [
+ "**SOLUCION**"
+ ],
+ "metadata": {
+ "id": "Qez3P4nMrjDV"
+ }
+ },
+ {
+ "cell_type": "code",
+ "source": [
+ "products = [\"t-shirt\", \"mug\", \"hat\", \"book\", \"keychain\"]\n",
+ "inventory = {}\n",
+ "\n",
+ "for product in products:\n",
+ " quantity = int(input(f\"Enter quantity for {product}: \"))\n",
+ " inventory[product] = quantity\n",
+ "\n",
+ "customer_orders = set()\n",
+ "for i in range(3):\n",
+ " order = input(f\"Enter product #{i+1} to order: \").strip()\n",
+ " if order in products:\n",
+ " customer_orders.add(order)\n",
+ " else:\n",
+ " print(f\"{order} is not a valid product.\")\n",
+ "\n",
+ "print(customer_orders)\n",
+ "\n",
+ "total_products_ordered = len(customer_orders)\n",
+ "percentage_ordered = (total_products_ordered / len(products)) * 100\n",
+ "order_status = (total_products_ordered, percentage_ordered)\n",
+ "\n",
+ "print(\"Order Statistics:\")\n",
+ "print(\"Total Products Ordered:\", order_status[0])\n",
+ "print(f\"Percentage of Products Ordered: {order_status[1]:.0f}%\")\n",
+ "\n",
+ "for product in inventory:\n",
+ " inventory[product] -= 1\n",
+ "\n",
+ "print(\"Updated inventory:\")\n",
+ "for product, quantity in inventory.items():\n",
+ " print(f\"{product}: {quantity}\")"
+ ],
+ "metadata": {
+ "id": "oQfA6mmOrpTw",
+ "colab": {
+ "base_uri": "https://localhost:8080/"
+ },
+ "outputId": "5a625d32-e94a-4eef-c065-40fafccd139f"
+ },
+ "execution_count": 4,
+ "outputs": [
+ {
+ "output_type": "stream",
+ "name": "stdout",
+ "text": [
+ "Enter quantity for t-shirt: 5\n",
+ "Enter quantity for mug: 4\n",
+ "Enter quantity for hat: 6\n",
+ "Enter quantity for book: 7\n",
+ "Enter quantity for keychain: 7\n",
+ "Enter product #1 to order: 8\n",
+ "8 is not a valid product.\n",
+ "Enter product #2 to order: mug\n",
+ "Enter product #3 to order: hat\n",
+ "{'mug', 'hat'}\n",
+ "Order Statistics:\n",
+ "Total Products Ordered: 2\n",
+ "Percentage of Products Ordered: 40%\n",
+ "Updated inventory:\n",
+ "t-shirt: 4\n",
+ "mug: 3\n",
+ "hat: 5\n",
+ "book: 6\n",
+ "keychain: 6\n"
+ ]
+ }
+ ]
+ }
+ ],
+ "metadata": {
+ "kernelspec": {
+ "display_name": "Python 3 (ipykernel)",
+ "language": "python",
+ "name": "python3"
+ },
+ "language_info": {
+ "codemirror_mode": {
+ "name": "ipython",
+ "version": 3
+ },
+ "file_extension": ".py",
+ "mimetype": "text/x-python",
+ "name": "python",
+ "nbconvert_exporter": "python",
+ "pygments_lexer": "ipython3",
+ "version": "3.9.13"
+ },
+ "colab": {
+ "provenance": [],
+ "include_colab_link": true
+ }
},
- {
- "cell_type": "markdown",
- "metadata": {},
- "source": [
- "## Exercise: Managing Customer Orders\n",
- "\n",
- "As part of a business venture, you are starting an online store that sells various products. To ensure smooth operations, you need to develop a program that manages customer orders and inventory.\n",
- "\n",
- "Follow the steps below to complete the exercise:\n",
- "\n",
- "1. Define a list called `products` that contains the following items: \"t-shirt\", \"mug\", \"hat\", \"book\", \"keychain\".\n",
- "\n",
- "2. Create an empty dictionary called `inventory`.\n",
- "\n",
- "3. Ask the user to input the quantity of each product available in the inventory. Use the product names from the `products` list as keys in the `inventory` dictionary and assign the respective quantities as values.\n",
- "\n",
- "4. Create an empty set called `customer_orders`.\n",
- "\n",
- "5. Ask the user to input the name of three products that a customer wants to order (from those in the products list, meaning three products out of \"t-shirt\", \"mug\", \"hat\", \"book\" or \"keychain\". Add each product name to the `customer_orders` set.\n",
- "\n",
- "6. Print the products in the `customer_orders` set.\n",
- "\n",
- "7. Calculate the following order statistics:\n",
- " - Total Products Ordered: The total number of products in the `customer_orders` set.\n",
- " - Percentage of Products Ordered: The percentage of products ordered compared to the total available products.\n",
- " \n",
- " Store these statistics in a tuple called `order_status`.\n",
- "\n",
- "8. Print the order statistics using the following format:\n",
- " ```\n",
- " Order Statistics:\n",
- " Total Products Ordered: \n",
- " Percentage of Products Ordered: % \n",
- " ```\n",
- "\n",
- "9. Update the inventory by subtracting 1 from the quantity of each product. Modify the `inventory` dictionary accordingly.\n",
- "\n",
- "10. Print the updated inventory, displaying the quantity of each product on separate lines.\n",
- "\n",
- "Solve the exercise by implementing the steps using the Python concepts of lists, dictionaries, sets, and basic input/output operations. "
- ]
- }
- ],
- "metadata": {
- "kernelspec": {
- "display_name": "Python 3 (ipykernel)",
- "language": "python",
- "name": "python3"
- },
- "language_info": {
- "codemirror_mode": {
- "name": "ipython",
- "version": 3
- },
- "file_extension": ".py",
- "mimetype": "text/x-python",
- "name": "python",
- "nbconvert_exporter": "python",
- "pygments_lexer": "ipython3",
- "version": "3.9.13"
- }
- },
- "nbformat": 4,
- "nbformat_minor": 4
-}
+ "nbformat": 4,
+ "nbformat_minor": 0
+}
\ No newline at end of file