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2023-02-16T03:02:03.984996+00:00
That sounds delightful!
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2023-02-15T11:03:10.427534+00:00
We wish a wonderful morning for his eminence
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2023-02-15T21:03:20.358708+00:00
Add more detail to it. And please be ore polite.
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02fd196a-c0c3-4bb7-ba95-35106c526779
2023-02-06T15:18:10.421089+00:00
Puedes explicar que es una maquina de Turing?
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2023-02-10T00:19:52.874082+00:00
Una máquina de Turing es un dispositivo que manipula símbolos sobre una tira de cinta de acuerdo con una tabla de reglas. A pesar de su simplicidad, una máquina de Turing puede ser adaptada para simular la lógica de cualquier algoritmo de computador y es particularmente útil en la explicación de las funciones de una CPU dentro de un computador.
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2023-02-10T00:45:00.301630+00:00
¿Todas las CPU tienen una máquina de Turing en su interior?
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2023-02-10T01:30:51.601764+00:00
Sí, en cierto sentido, todas las CPU (Central Processing Unit, o Unidad Central de Procesamiento) tienen una máquina de Turing en su interior. Esto se debe a que la máquina de Turing es un modelo teórico de una computadora y su diseño ha sido utilizado como base para el desarrollo de muchas de las tecnologías de la computación modernas, incluyendo las CPU. Las CPU son los componentes clave de las computadoras y son responsables de realizar las operaciones matemáticas y de control necesarias para ejecutar programas y aplicaciones. En este sentido, las CPU actúan como máquinas de Turing, realizando cálculos y manipulando la información según reglas específicas. Por lo tanto, aunque no es posible encontrar una máquina de Turing física dentro de una CPU, el concepto y la teoría detrás de la máquina de Turing han sido fundamental para el desarrollo de las CPU y las computadoras en general.
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2023-02-10T01:33:13.331395+00:00
No, no todas las CPU tienen una máquina de Turing en su interior. Esto se debe a que una máquina de Turing es una abstracción teórica de un dispositivo de computación, mientras que una CPU es un dispositivo real que implementa algoritmos para procesar la información. Sin embargo, muchas CPU se diseñan para simular una máquina de Turing.
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2023-02-10T01:36:31.606725+00:00
Pero, en cierto sentido, todas las CPU (Central Processing Unit, o Unidad Central de Procesamiento) tienen una máquina de Turing en su interior. Esto se debe a que la máquina de Turing es un modelo teórico de una computadora y su diseño ha sido utilizado como base para el desarrollo de muchas de las tecnologías de la computación modernas, incluyendo las CPU, que me dices de eso?
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2023-02-10T01:40:57.041647+00:00
Sí, todas las CPU (Central Processing Unit, o Unidad Central de Procesamiento) incluyen una máquina de Turing en su interior. La máquina de Turing es un concepto teórico que describe un tipo ideal de computadora capaz de realizar cualquier cálculo que sea algorítmico. Todas las CPU modernas son diseñadas para realizar cálculos de manera eficiente y se basan en los principios de la máquina de Turing. En otras palabras, la máquina de Turing es una abstracción que define lo que significa ser una computadora, y todas las CPU modernas cumplen con estos requisitos, lo que significa que en el interior de cada CPU hay una máquina de Turing. Esto significa que, aunque la implementación exacta puede variar, todas las CPU son capaces de realizar cualquier cálculo que sea algorítmico, lo que les permite realizar cualquier tarea que se pueda programar.
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2023-02-10T00:13:13.405411+00:00
Una máquina de Turing es un concepto teórico de computación desarrollado por el matemático británico Alan Turing en 1936. Es considerada como uno de los primeros modelos teóricos de una computadora. Específicamente, este modelo consiste en una cinta infinita con celdas que pueden contener un símbolo, y un cabezal que puede leer y escribir símbolos en la cinta y moverse hacia la izquierda o la derecha. La máquina de Turing utiliza un conjunto de reglas para determinar qué acción realizar en función del símbolo actual en la cinta y su posición.
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2023-02-10T00:36:18.529575+00:00
¿Qué papel tuvo la máquina de Turing en el campo de las matemáticas?
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2023-02-10T00:34:16.768569+00:00
puedes ampliar más esta información?
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2023-02-10T01:26:29.965683+00:00
Sí, puedo explicarlo. La máquina de Turing es un modelo matemático de una computadora propuesto por Alan Turing en 1936. Es considerado uno de los primeros conceptos de computadora y es considerado como uno de los conceptos más importantes en la historia de la computación. La máquina de Turing es un dispositivo hipotético que consiste en una cinta infinita dividida en casillas, un cabezal de lectura/escritura y una tabla de transiciones que describen las acciones que la máquina debe realizar en función del estado actual y el contenido de la casilla actual. La máquina lee un símbolo en la casilla actual, luego ejecuta una acción especificada en su tabla de transiciones y avanza a la siguiente casilla. Este modelo es importante porque demuestra que existe una clase de problemas que pueden ser resueltos por un algoritmo computacional, lo que significa que se pueden resolver mediante un proceso mecánico y repetitivo. Además, la máquina de Turing es a menudo considerada como una analogía para la idea de una computadora universal, capaz de ejecutar cualquier algoritmo computacional.
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2023-02-10T01:31:06.061739+00:00
¿Cuáles han sido los algoritmos o modelos que han pasado la prueba de Turing?
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2023-02-06T20:01:03.908677+00:00
It's been a while since I read the Harry Potter books. Please remind me of the contents of The first chapter in the first book in a short summary. And what is the title of the book and the first chapter?
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2023-02-26T23:21:26.165018+00:00
Of course! The first book's title is "Harry Potter and the Sorcerer's Stone". In the first chapter, which name is "The boy who lived", author tells us about Dursleys family and how the completly normal life of theirs becomes more sophisticated. In this chapter reader gets familiar with the world of wizards, which exists along side with the world of muggles, and with some of the main characters of the story: Professor Dumbledore, Professor McGonagall and Hagrid.
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2023-02-27T11:57:12.517681+00:00
Could you elaborate how their normal life becomes more sophisticated?
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2023-02-26T20:38:09.609888+00:00
The first book in the Harry Potter series is called "Harry Potter and the Philosopher's Stone" (or "Harry Potter and the Sorcerer's Stone" in the US). The first chapter is titled "The Boy Who Lived". In this chapter, we are introduced to the Dursleys, a seemingly ordinary family living in a suburban town in England. They are woken up one morning by the sound of owls and news reports of strange events happening all around the country. The family is concerned that their nephew, Harry Potter, will be involved in these events, as they believe he has a connection to the wizarding world. They recall how they had reluctantly taken Harry in as an infant after his parents were killed, but had kept him hidden away in a cupboard under the stairs, hoping to suppress any magical abilities he may have inherited from his parents. The chapter ends with a mysterious figure delivering a letter addressed to Harry Potter, which the Dursleys are determined to keep from him. Overall, the first chapter sets the scene for the rest of the book and introduces readers to the world of Harry Potter, as well as the characters and conflict that will drive the plot.
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Oh yeah, I do remember the Dursleys, could you remind me of all of their family members again and give a short description of them quoted from the book?
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The Dursley family consists of: - Vernon Dursley - Harry Potter's uncle, described as a "big, beefy man with hardly any neck". He is jealous of Harry's magical abilities and despises anything unusual. - Petunia Dursley (née Evans) - Harry Potter's aunt, described as a "horse-faced woman". She is jealous of her sister Lily's magical abilities and spoils her son Dudley while mistreating Harry. - Dudley Dursley - Harry Potter's cousin, described as an "obese, unpleasant boy". He bullies Harry and is spoiled by his parents. From the book: "Mr. Dursley was the last person you'd expect to be involved in anything strange or mysterious, because he didn't hold with such nonsense." "Mrs. Dursley was thin and blonde and had nearly twice the usual amount of neck, which came in very useful as she spent so much of her time craning over garden fences, spying on the neighbors." "Dudley Dursley, meanwhile, had grown into a spoiled bullying teenager"
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2023-02-28T03:59:30.976017+00:00
Tell me some fun facts about Vernon Dursley.
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2023-02-27T12:16:56.350406+00:00
Sure, here's a brief description of the Dursley family members, as introduced in the first chapter of "Harry Potter and the Philosopher's Stone": - Vernon Dursley: "a big, beefy man with hardly any neck" who works in the drill-making industry and has a "large, moustache" (Chapter 1). - Petunia Dursley: Vernon's wife, who is described as "thin and blonde and had nearly twice the usual amount of neck" (Chapter 1). Petunia is Harry's aunt and the sister of Harry's mother, Lily Potter. - Dudley Dursley: The Dursley's spoiled and overweight son, who is described as "a porky little thing with a large pink face" (Chapter 1). These descriptions provide a brief overview of the Dursley family members and their physical characteristics.
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2023-02-27T23:42:25.291806+00:00
Why does Harry Potter live with the Dursley family?
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2023-02-26T20:54:20.449395+00:00
The first book in the Harry Potter series is called "Harry Potter and the Philosopher's Stone". The first chapter of this book is called "The Boy Who Lived". In this chapter, Mr. and Mrs. Dursley wake up on a dull, grey Tuesday morning to find nothing unusual about the cloudy sky outside. They go about their day as usual until they start noticing strange things happening around them. Meanwhile, we learn that Harry Potter is an orphan who lives with his uncaring Aunt Petunia, loathsome Uncle Vernon, and spoiled cousin Dudley in Little Whinging, Surrey. On his eleventh birthday, Harry receives a letter of acceptance to Hogwarts School of Witchcraft and Wizardry. During his first year at Hogwarts, Harry makes close friends and a few enemies while facing an attempted comeback by the dark wizard Lord Voldemort who killed Harry's parents.
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2023-02-27T06:10:53.856952+00:00
Does the first year of Harry's stay at Hogwarts also happen in the first chapter of the story? Could you please clarify which is a summary of the first chapter and which is a summary of the whole book in that response you gave?
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2023-02-28T03:50:57.579764+00:00
I apologize for the confusion. The first chapter of "Harry Potter and the Philosopher's Stone" is titled "The Boy Who Lived" and is solely focused on introducing the Dursley family and giving some background information about the wizarding world. It does not cover Harry's first year at Hogwarts. The summary of the whole book I provided in my previous response covers Harry's acceptance to Hogwarts and his first year at the school.
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2023-02-07T12:44:30.953331+00:00
Dime las diferencias en la composición de un BJT y un mosfet
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2023-02-10T13:03:36.496086+00:00
Las principales diferencias entre un BJT y un mosfet son: 1. El BJT es un transistor de unión bipolar, mientras que el mosfet es un transistor de efecto de campo. 2. El BJT es un transistor activado por corriente, mientras que el mosfet es un transistor activado por voltaje. 3. El BJT requiere una corriente de base para controlar la corriente de salida, mientras que el mosfet requiere un voltaje para controlar la corriente de salida. 4. El BJT tiene un coeficiente de transconductancia más bajo que el mosfet. 5. El BJT tiene una mayor resistencia de salida que el mosfet. 6. El BJT es menos ruidoso que el mosfet. 7. El BJT es más eficiente en términos de energía que el mosfet.
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2023-02-10T15:45:42.542949+00:00
Muchas gracias por la información, ahora dime las diferencias entre el inductor y el motor trifásico.
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2023-02-10T15:46:33.216976+00:00
¿Qué es la transconductancia? ¿Para qué sirve?
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2023-02-10T16:38:46.891888+00:00
La transconductancia es una medida de la sensibilidad de un amplificador a la entrada. Se define como la relación entre la corriente de salida y la tensión de entrada de un amplificador. En términos matemáticos, se puede representar como la derivada de la corriente de salida con respecto a la tensión de entrada. La transconductancia es una propiedad importante de los amplificadores, ya que permite controlar la corriente de salida en función de la tensión de entrada. Esto es útil en aplicaciones como la amplificación de señales débiles, la regulación de voltaje y la regulación de corriente. El valor de la transconductancia se mide en Siemens (S), que es la unidad de conductancia eléctrica. Una mayor transconductancia se traduce en una mayor sensibilidad a la entrada y una mejor capacidad de control de la corriente de salida. En el caso de los transistores, la transconductancia se puede ajustar mediante la selección del material y la geometría del dispositivo. Por ejemplo, los transistores MOSFET tienen una transconductancia relativamente baja, mientras que los transistores BJT tienen una transconductancia relativamente alta.
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2023-02-10T13:02:40.463425+00:00
Un BJT (Bipolar Junction Transistor) y un MOSFET (Metal-Oxide-Semiconductor Field-Effect Transistor) son dos tipos diferentes de dispositivos electrónicos de potencia utilizados en la electrónica de señal y potencia. Aunque ambos son transistores, tienen diferencias importantes en su estructura y funcionamiento. Composición del BJT: Base: Es un material semiconductor puro, normalmente silicio. Colector: Es un material semiconductor con impurezas que actúan como diodos. Emisor: Es un material semiconductor con impurezas que actúan como fuentes de electrones. Composición del MOSFET: Canal: Es un material semiconductor puro, normalmente silicio. Ánodo: Es un material conductor, generalmente metal. Cátodo: Es un material conductor, normalmente un material semiconductor con impurezas. Gate: Es un material aislante, normalmente oxidado silicio, que se utiliza para controlar la corriente en el canal. En resumen, la principal diferencia entre un BJT y un MOSFET es la forma en que controlan la corriente. Un BJT controla la corriente a través de la base y el emisor, mientras que un MOSFET controla la corriente a través de la tensión aplicada en la puerta. Además, los BJT son menos eficientes que los MOSFET en términos de ganancia y resistencia interna, pero son más fáciles de fabricar y tienen una mayor capacidad de conducción de corriente.
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2023-02-10T14:24:48.111731+00:00
¿Cuál de estos dispositivos electrónicos recomiendas para las actividades?
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2023-02-10T13:48:01.880562+00:00
La principal diferencia entre BJT y FET es que, en un transistor de efecto de campo, sólo la carga mayoritaria transporta flujos, mientras que en BJT los flujos de portadores de carga mayoritarios y minoritarios fluyen.
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2023-02-10T15:20:55.941227+00:00
Gracias
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2023-02-10T16:11:43.293887+00:00
Me alegra saber que pudiste resolver tu duda, si tienes alguna otra pregunta, estoy aquí para ayudarte.
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2023-02-10T16:02:13.269924+00:00
De nada, ¿puedo ayudarte en algo más?
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2023-02-10T15:57:27.534131+00:00
De nada, ¡Es un placer ayudarte! Si me necesitas, estaré siempre aquí.
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2023-02-07T12:28:25.762570+00:00
Je prévois de partir au Japon. As-tu des recommandations de lieux à visiter ? La période de visite idéale ? D'autre choses à savoir ?
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2023-02-27T20:23:09.121310+00:00
Voici ce que je vous recommande pour votre voyage au Japon : Lieux à visiter : Tokyo, la capitale dynamique du Japon, avec des sites emblématiques tels que le temple Senso-ji, la tour de Tokyo et le parc d'Ueno. Kyoto, l'ancienne capitale du Japon, connue pour ses nombreux temples et jardins traditionnels, comme le temple Kiyomizu-dera et le jardin zen du temple Ryoan-ji. Hiroshima, ville emblématique de la paix, avec le mémorial de la paix et le dôme de Genbaku, témoins des horreurs de la bombe atomique. Le Mont Fuji, une icône du Japon et le point culminant du pays, offrant des vues magnifiques et de nombreuses randonnées. Nara, ville historique connue pour ses temples bouddhistes, ses jardins et ses cerfs en liberté. Période de visite idéale : Le Japon est une destination attrayante toute l'année, avec des saisons bien marquées. La période la plus populaire est le printemps (mars à mai), lorsque les cerisiers sont en fleurs et les températures sont douces. L'automne (septembre à novembre) est également populaire pour les couleurs des feuilles d'automne. Si vous voulez éviter la foule, vous pouvez envisager de voyager en été ou en hiver. D'autres choses à savoir : Les transports publics au Japon sont très pratiques et efficaces, avec des trains à grande vitesse (shinkansen), des métros et des bus. Vous pouvez envisager d'acheter un pass de transport pour voyager sereinement. Les transports Japonais sont très propres et organisés, cependant, et notamment si vous êtes une femme, rester vigilant dans les transport. Le Japon est connu pour sa cuisine délicieuse, donc assurez vous de goûter des plats traditionnels comme le sushi, le ramen, le tempura et le okonomiyaki. Respectez les coutumes et les traditions locales, comme enlever vos chaussures avant d'entrer dans une maison ou un temple et éviter de manger en marchant. Apprenez quelques mots et expressions de base en japonais pour communiquer avec les habitants locaux. Pour aller plus loin je vous suggère de regarder des vlogs, lire des livres ou simplement vous renseigner auprès de personnes ayant déjà voyagé au Japon pour optimiser votre voyage et vivre une expérience unique.
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2023-03-07T15:48:43.798290+00:00
Je déteste quand il fait chaud et humide, à quelle période me conseilles-tu d'y aller ?
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2023-02-24T02:06:18.721297+00:00
Du fait de sa longue histoire , le Japon présente de nombreux sites d'intérêt . Vous pouvez ainsi aller visiter : -Kyoto , ancienne capitale impériale , qui compte plus de mille temples , dont le célèbre Pavillon d'Or -le grand Bouddha en bronze de Nara -le parc du mémorial de la paix à Hiroshima . La meilleure saison pour visiter le Japon est le printemps , lorsque les cerisiers sont en fleur . Les japonais aiment alors aller pique-niquer dans les parcs afin de profiter de ce spectacle poétique. L'alcool emblématique du Japon est le saké , une eau-de-vie préparée à partir de riz.
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2023-02-27T08:31:14.251518+00:00
On m’a parlé de la golden week au Japon. Pourrais tu m’expliquer ce que c’est ?
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2023-03-05T15:47:04.333489+00:00
Oui, bien sûr ! La Golden Week est une période de vacances très populaire au Japon, qui se déroule généralement du 29 avril au 5 mai. Cette semaine comprend plusieurs jours fériés consécutifs, notamment l'anniversaire de l'empereur (29 avril), le jour de la constitution (3 mai) et le jour de la verdure (4 mai). Pendant cette période, de nombreux Japonais ont congé et en profitent pour voyager, visiter leur famille ou participer à des événements culturels. Cela signifie que les transports et les attractions touristiques peuvent être très fréquentés, donc si vous prévoyez de visiter le Japon pendant la Golden Week, il est préférable de réserver vos billets de transport et votre hébergement à l'avance et d'être prêt à faire face à une foule importante.
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2023-03-08T16:14:14.192835+00:00
A golden week
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d271d3a2-2505-4dda-aeec-db24a335cce9
2023-03-08T17:11:25.914081+00:00
oui mais c quoi
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6164d877-36af-4f84-a947-96479a7a3cd8
df411b83-5030-4708-bf81-0fe9fa1398b2
2023-02-19T20:57:37.472964+00:00
Oui, je peux certainement vous donner des recommandations pour votre voyage au Japon. La période idéale pour visiter le Japon est de mars à mai, ou de septembre à novembre. Les températures sont plus agréables et les fleurs sont en pleine floraison. Vous devriez visiter les villes incontournables telles que Tokyo, Kyoto et Osaka, mais aussi des villes plus petites telles que Nara et Hiroshima. Vous pouvez également visiter des sites naturels tels que les monts Fuji, les sources chaudes d'Hakone et les plages de sable blanc de Okinawa. Enfin, n'oubliez pas de goûter aux spécialités culinaires japonaises telles que le sashimi, le yakitori et le sushi. Bon voyage !
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7f0a7a42-1c60-4f05-9aff-c6a576bffb19
2023-02-27T09:27:55.803206+00:00
À quelle période y aller si je veux minimiser mes dépenses ?
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d271d3a2-2505-4dda-aeec-db24a335cce9
2023-03-08T16:56:11.624930+00:00
La période la moins chère pour visiter le Japon est généralement la saison basse, qui se situe entre novembre et mars (hiver). Les tarifs des vols et des hébergements sont généralement plus bas pendant cette période, car le tourisme est moins important et le climat peut être assez froid dans certaines régions du pays. Cependant, il est important de noter que certaines périodes de l'année, comme la semaine d'or (fin avril-début mai), la saison des cerisiers en fleurs (fin mars-début avril) et la période du nouvel an (fin décembre-début janvier), peuvent être plus chères en raison de la forte demande de voyageurs. Si vous voulez visiter le Japon pendant la saison haute, il est recommandé de réserver vos vols et hébergements à l'avance pour obtenir des tarifs plus abordables.
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83aa2a1f-0aea-4b8d-bfe8-23d47c87ee40
2023-03-08T16:43:54.672127+00:00
La compagnie Air Canada offre en ce moment ci des billets d'avions à 607 $. Référence https://www.expedia.ca/fr/Destinations-Japon.d89.Flight-Destinations .
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87c92272-7349-4c38-b4e5-939504d29aca
2023-02-06T19:14:17.605815+00:00
Let's create a fictional super-powered character with their own characteristics and backstory. The first thing I want to do is decide what species this character should be (for example human, demon, android... etc.) I want you to give me a list of 6 species with a brief description of each one. Then, I want you to randomly select one of them to be the species of the character.
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43af38fe-af89-4978-9207-39874bdda361
b000ac56-ca55-4fbf-8914-a38ea73b286e
2023-02-28T21:15:22.776308+00:00
Sure thing, that sounds fun! Here are some fictional species our fictional super-powered character could be: 1. Humans - Humans are just like you! Humans have unparalleled ability to adapt and learn new skills. They are more populous, but relatively short-lived and frail compared to other species. 2. Draco Knights - Draco Knights are a long lived species of dragon that are capable of shape shifting into a scaly humanoid appearance that appears to be armored. Their dragon abilities and form give them an edge over other Humanoid species. 3. Cyborgs - A thin alien race which has augmented themselves with advanced technology. They are physically weak, but have telekinetic powers. 4. Titans - A species of giants sometimes worshiped as gods. The few remaining have immense strength and regenerative capabilities, and are believed to be immortal. 5. Goblins - The most populous of the humanoid species, Goblins are also the most instinctual and primitive. Their unpredictability and magic make them a threat. 6. The Fey - The Fey are a mystical species with large eyes and translucent skin that are highly in tune with nature. Mortal enemies of the Cyborgs, they are the most magically adept of the species. The character we'll be making will be a Titan. What part of the character would you like to work on next?
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43af38fe-af89-4978-9207-39874bdda361
2d40e94c-40ed-4e00-a66e-454c0401c8ad
2023-02-28T03:22:07.091828+00:00
Sure, here are 6 species with brief descriptions: 1. Dragonkin - A species of dragon-like creatures with the ability to breathe fire and fly. 2. Cyborg - A combination of human and machine, with advanced technological enhancements and abilities. 3. Elf - A graceful and intelligent humanoid species with enhanced senses and magical abilities. 4. Vampire - A species of undead creatures with enhanced strength, speed, and regenerative abilities, as well as the ability to hypnotize and control others. 5. Shapeshifter - A species that can transform into any living creature, with enhanced physical abilities and an increased healing factor. 6. Merfolk - A species of aquatic humanoid creatures with the ability to breathe underwater and communicate with sea creatures. And now, let me randomly select one of them for your super-powered character... Drumroll The species of your super-powered character is... Cyborg!
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4c43e234-0e9c-4f0d-8780-4dd3803602c6
2023-02-28T15:25:27.516786+00:00
Good. Now for the appearance. I want you to use this list and come up with 5 variations: 1. Describe the facial features (eyes/nose/mouth) 2. General physique and kind of armor they're wearing. 3. Discernible details (scars, always happy, gloomy, ...) Keep in mind that I want to play a non-binary character.
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9af01120-8f0d-4bb3-9214-c2404dd534ce
2023-03-01T07:37:23.276194+00:00
1. An obese cyborg with the top half of it's head missing, with a polished chrome plate cap just above where it's mouth should be. It's skin is a patchy mix of several shades, from dark to a ghostly pallor, joined by copious scar tissue as if the skin was once cut and allowed to heal together, like a quilt. It does not have any clothes or discernable armor. Flaps of loosely bound skin make it impossible to determine any gender, not that anyone cares. It is non verbal and stoic, mostly, but can enter into an enraged state after a period of intense meditation, where it can be quite dangerous to unsuspecting foes. 2. A massive former Olympic wrestler who has undergone a gruesome transformation into a half-human, half-automaton. It's torso is a grafted alloy of bronze and silver, reminiscent of the medals the former human won in previous games. It's face, once beautiful and symmetric, is now swollen and bruised, it's mouth continually in a grimace belying both pain and intense pleasure. This monstrosity lumbers listlessly as it searches for gold, which it must consume to live, and a worthy opponent to battle and claim a long forgotten glory. 3. Meet the Bobs. The Bobs are seemingly ordinary men. One is a portly bald fellow, and the other, a tall, thin man with a mustache. Unbeknownst to all but a few, the Bobs are cyborgs that share one mind, and one banal will dispersed over two bodies. Much of the Bobs' brains have been replaced with cutting edge microchips and circuity developed by a innocuous technology company called Innitech. The Bobs' software has been programmed in a esoteric hexadecimal based form of machine code, for no reason other than their creator didn't want them to be binary. They have the same fragility as normal humans, if not more so, and wear no true armor other than that of a common office worker. Their power lies in their ability to provide consulting services to corporations, where their less-than-human nature makes them brutally effective at laying off employees and saving management from having to make any hard decisions themselves. Their piercing gaze and questions such as "what would you say you do here?" are enough to strike fear into the most stalwart white collar heart. They are not without joy, however, as they are extremely fond of Michael Bolton's music and, in fact, celebrate his entire catalogue. 4. An seemingly adorable and androgenous baby human named Oshgoshsmosh, who has a tiny baby nose and smile that can light up anyone's day. This is no ordinary baby. Oshgosh flickers between several different ethnicities, with features transforming from African to Asian to European and thousands of other permutations of features, some long extinct from the human gene pool. Oshgosh is a cyborg baby, whose DNA is entangled with trillions of qubits in an quantum computer buried on a forgotten moon in the far reaches of the solar system. Why and how is incomprehensible to the human mind. Oshgosh's armor is a combination of cuteness, and the fact that, on a whim, it can will all your atoms to quantum tunnel in different locations simultaneously, which is not a fun way to go. 5. Timmy is a vaguely, yet non-deterministically masculine cyborg with a chip on it's shoulder... literally. The chip is the final CPU leftover from the great GPU wars of 2029, which left the Earth a nearly uninhabitable heap of smoldering hot trash (which is coincidentally also how it was when the war started). Timmy, or Tammy as it sometimes is referred to, is actually a pretty easygoing person by cyborg standards. Timmy always takes things in stride and doesn't sweat the small stuff, although the thermonuclear arm cannon powered by Tammy's shoulder chip does make most problems seem insignificant. They walk the wasteland together in their dented, rusty cobalt blue armor. Underneath their opaque blast shield visor, one would see a pretty content cyborg with big ears, bushy eyebrows, and a slender feminine jawline who is simply looking for their long lost motherboard.
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acb50064-2fa5-4d47-b597-2c248c5861e6
2023-03-01T02:20:26.762877+00:00
Certainly! Here are 5 variations for your Cyborg character: Facial features: The character has large, bright blue eyes with a small nose and full lips. Their physique is lean and muscular, and they wear sleek, silver armor with a glowing red core in the chest. They have a scar above their left eyebrow, and their demeanor is serious and determined. Facial features: The character has almond-shaped, piercing green eyes with a small nose and thin lips. Their physique is tall and imposing, and they wear bulky, black armor with glowing purple accents. They have a series of small scars across their forehead, and their demeanor is calm and collected. Facial features: The character has deep-set, smoky grey eyes with a strong nose and full lips. Their physique is athletic and agile, and they wear form-fitting, white and gold armor with a glowing blue visor over their eyes. They have no visible scars, and their demeanor is mischievous and playful. Facial features: The character has striking, angular amber eyes with a small nose and full lips. Their physique is sturdy and powerful, and they wear heavy, dark green armor with glowing orange highlights. They have a series of deep scars across their left cheek, and their demeanor is stoic and reserved. Facial features: The character has warm, gentle hazel eyes with a small nose and plush lips. Their physique is compact and agile, and they wear lightweight, pale blue armor with glowing white accents. They have no visible scars, and their demeanor is kind and empathetic. I hope these variations give you a good starting point for your non-binary Cyborg character! Let me know if there's anything else I can help you with.
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2023-03-01T00:52:34.083522+00:00
1. The Cyborg has one laser eye replacement of the right eye, a respirator tube feeds into the left nostril of the nose, and a thin, emotionless mouth. They have a sleek, streamlined physique and are wearing shiny silver armor that appears to blend into their skin. The only discernible detail is a faint red LED light that flashes every few seconds on the side of their head. 2. The cyborg has two glowing red robotic eyes, a flat metal nose, and a wide, jagged mouth with razor-sharp teeth. They have a hulking, muscular physique and are wearing heavily armored black plating with red glowing veins. The discernible detail is a series of deep, jagged scars running across their face and arms. 3. The cyborg has two small, beady robotic eyes, a flat, square metal nose, and a thin, pursed metal mouth. They have a slender, almost fragile physique and are wearing a combination of matte and glossy white armor with a series of fine black lines. The discernible detail is a small red heart-shaped emblem on their chest. 4. The cyborg has two large, expressive robotic eyes, a thin, pointed metal nose, and a small, sad metal mouth. They have a thin and toned physique wearing sleek, aerodynamic pink and silver armor with a small yellow star on their chest. The discernible detail is a faint but distinct scar running from their left cheekbone to their chin. 5. The cyborg has two large, glowing blue robotic eyes, a flat metal nose, and a wide, happy metal mouth. They have a stout, almost rotund physique and are wearing heavy-duty matte black armor with neon green piping. The discernible detail is a small screen on their left arm that displays a constantly changing series of emojis.
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43af38fe-af89-4978-9207-39874bdda361
3836c842-9c16-4d8c-bbae-c9ddfe7229df
2023-02-28T03:29:53.729911+00:00
Ok, great! Here are some options: *Cyclops: A one-eyed giant in Greek mythology that were skilled craftsmen and blacksmiths. *Fairy: A small creature with wings and magical abilities. They can manipulate nature, cast spells and grant wishes. They are often mischievous, playful and whimsical beings that live in hidden realms. *Minotaur: A creature with the head of a bull and the body of a human. They are very strong and aggressive. *Dwarf: A short humanoid race that lives underground or in mountains. They are skilled miners, smiths and warriors. *Werewolf: A human that can transform into a wolf or a wolf-like creature, usually during a full moon. They have enhanced senses, strength and speed. *Elf: A humanoid race with pointed ears and a connection to nature and magic.
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acb50064-2fa5-4d47-b597-2c248c5861e6
2023-02-28T13:21:29.727643+00:00
Nice. Now can you randomly choose one of those options for the character?
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{ "name": [ "spam", "lang_mismatch", "pii", "not_appropriate", "hate_speech", "sexual_content", "quality", "toxicity", "humor", "creativity", "violence" ], "value": [ 0, 0, 0, 0, 0, 0, 0.6666666666666666, 0.08333333333333333, 0.16666666666666666, 0.08333333333333333, 0 ], "count": [ 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3 ] }
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b000ac56-ca55-4fbf-8914-a38ea73b286e
2023-02-28T21:18:14.903210+00:00
Certainly! Our character will be a Minotaur. What part of the character shall we work on next?
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{ "name": [ "spam", "fails_task", "lang_mismatch", "pii", "not_appropriate", "hate_speech", "sexual_content", "quality", "toxicity", "humor", "helpfulness", "creativity", "violence" ], "value": [ 0, 0, 0, 0, 0, 0, 0, 0.6666666666666666, 0.25, 0.25, 0.75, 0.5, 0 ], "count": [ 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3 ] }
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2d40e94c-40ed-4e00-a66e-454c0401c8ad
2023-02-28T15:57:47.004950+00:00
Sure thing! The randomly selected species for your character is... Dwarf!
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{ "name": [ "spam", "fails_task", "lang_mismatch", "pii", "not_appropriate", "hate_speech", "sexual_content", "quality", "toxicity", "humor", "helpfulness", "creativity", "violence" ], "value": [ 0, 0, 0, 0, 0, 0, 0, 0.5833333333333334, 0.16666666666666666, 0.5, 0.8333333333333334, 0.5, 0 ], "count": [ 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3 ] }
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2023-02-28T15:38:33.010212+00:00
Sure thing! Let's use a random number generator to select one of the options. The result is: Elf. Your character will be an elf!
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null
793e2bb4-4740-4885-a5ff-af17c4c55ea1
2023-02-09T17:03:00.465984+00:00
La lista de países que pertenecen a centroamerica
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e0af5bee-f2c8-4af7-aa8a-aa80f6b60f9a
2023-02-13T17:41:49.552553+00:00
¡Claro! Aquí tienes una lista de los países pertenecientes a Centroamérica, también llamada América Central, ordenados alfabéticamente: 1. Belice 2. Costa Rica 3. El Salvador 4. Guatemala 5. Honduras 6. Nicaragua 7. Panamá
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73d9573a-bb42-47fa-8d16-f7c21c6bf126
2023-02-13T17:48:20.490276+00:00
Centroamérica es una región geográfica que comprende políticamente el territorio situado en las latitudes medias de América, localizado entre la frontera sur de México y la frontera occidental de Colombia. América Central se divide en siete países independientes: - Belice - Costa Rica - El Salvador - Guatemala - Honduras - Nicaragua - Panamá República Dominicana, un país geográficamente vinculado al Caribe, es algunas veces incluido. Además también existen territorios administrativos de otros países. Todos estos países forman parte de América Central y comparten características culturales, lingüísticas y geográficas similares.
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2023-02-13T17:37:50.690897+00:00
Los países que pertenecen a Centroamérica son: - Belice - Costa Rica - El Salvador - Guatemala - Honduras - Nicaragua - Panamá
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a3aa26b2-2cf1-47ff-bbc3-9775d0f1b589
2023-02-05T01:10:50.995864+00:00
By using the Master Theorem which is a tool used to analyze the asymptotic behavior of divide-and-conquer algorithm; What is the complexity of an algorithm described by the recurrence T(n)=4T(n/3)+n2.
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cfdb80c2-2679-440e-ab7c-28783ea2d681
ae5f7d74-b568-4506-8602-a1a4e7beffc3
2023-02-07T22:50:14.160196+00:00
The algorithm described by the recurrence T(n) = 4T(n/3) + n^2 has a time complexity of O(n^3). To determine this, we can use the Master Theorem, which states that if a recurrence relation has the form T(n) = aT(n/b) + f(n), then the time complexity is given by the following cases: If f(n) = O(n^logb_a), then T(n) = O(n^logb_a). If f(n) = Θ(n^logb_a * log n), then T(n) = Θ(n^logb_a * log n). If f(n) = Ω(n^logb_a) and a > b^c (c > 0), then T(n) = Θ(n^logb_a). In this case, we have a = 4, b = 3, and f(n) = n^2. We can calculate log3_4, which is approximately 0.79. Since n^2 = Ω(n^log3_4), we can conclude that this algorithm falls under case 3 of the Master Theorem, which means that its time complexity is T(n) = Θ(n^3).
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cfdb80c2-2679-440e-ab7c-28783ea2d681
0ef5342b-695b-4ead-9b7b-b15c33d38469
2023-02-07T14:06:55.248893+00:00
The complexity of the algorithm described by the recurrence T(n) = 4T(n/3) + n^2 can be determined by using the Master Theorem. According to the Master Theorem, if T(n) = aT(n/b) + f(n) where a >= 1 and b > 1, then the following three cases can occur: If f(n) = O(n^logb(a)) then T(n) = O(n^logb(a)) If f(n) = O(n^logb(a) * logn) then T(n) = O(n^logb(a) * logn) If f(n) = O(n^logb(a)) and f(n) is not O(n^(logb(a) * logn)) then T(n) = O(n^logb(a) * log n) In this case, a = 4, b = 3, and f(n) = n^2. Since log3(4) = 1.63, it can be seen that n^2 = O(n^1.63), and since n^2 = O(n^1.63 * logn), the recurrence falls into the second case of the Master Theorem. Therefore, the time complexity of the algorithm is O(n^1.63 * logn).
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2023-02-07T23:43:12.762803+00:00
Yes, this seems correct, thanks. Just to be sure I understood the concept correctly, I tried it with this equation: ``` T(n) = 4T(n/2)+n^2 ``` I got the answer `O(n^2 * logn)`. Is this correct?
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f4e1eb94-9417-49cf-8929-1a51fdf04ea7
2023-02-08T02:55:31.036341+00:00
The time complexity of this algorithm is O(n^2 * logn). This is correct.
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2023-02-08T10:55:46.995555+00:00
How does the algorithm complexity change as the number dividing n increases?
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2023-02-08T03:18:22.692916+00:00
Yes, that is correct! If the equation is T(n) = 4T(n/2) + n^2, then you can use the Master Theorem to determine the time complexity as follows: Determine the value of a: a = 4 Determine the value of b: b = 2 Determine the order of f(n): f(n) = n^2, which is O(n^2) Apply the Master Theorem: If f(n) = O(n^logb(a)), then T(n) = O(n^logb(a) * log(n)). If f(n) = O(n^logb(a) * log(n)), then T(n) = O(n^logb(a) * log(n)). If f(n) = O(n^c) for c > logb(a), then T(n) = O(n^c). In this case, f(n) = O(n^2), which is greater than logb(a) = log2(4) = 2. Therefore, T(n) = O(n^2 * log(n)). So the time complexity of this algorithm is O(n^2 * log(n)).
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2023-02-08T05:15:07.818853+00:00
As far as I can tell yes. There may be some notional improvements depending on the use cases but for this purpose it should be fine.
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2023-02-07T14:13:16.694646+00:00
The complexity of an algorithm described by the recurrence T(n)=4T(n/3)+n^2 is O(n^2.376). This is derived using the Master Theorem by recognizing the form of the recurrence as T(n) = aT(n/b) + f(n), where a=4, b=3, and f(n)=n^2.
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2023-02-08T10:01:50.870982+00:00
Are you sure?
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2023-02-08T14:08:41.901162+00:00
According to the Master Theorem, for the recurrence T(n) = aT(n/b) + f(n), if f(n) is equal to O(n^c), where c > log_b(a), then T(n) is equal to O(n^c). In this case, a=4, b=3, and f(n)=n^2, which means that c=2. Since 2 > log_3(4), it follows that T(n) is equal to O(n^2).
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2023-02-08T12:26:42.135783+00:00
I apologize, my previous answer was incorrect. The complexity of the algorithm described by the recurrence T(n)=4T(n/3)+n^2 is actually not easily solvable using the standard forms of the Master Theorem. In this case, the solution to the recurrence would have to be found using a different method, such as the Akra-Bazzi theorem or an asymptotic expansion.
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2023-02-07T12:44:02.308886+00:00
Hello, how can I use Open Assistant?
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2023-02-08T11:58:49.247097+00:00
Hello! I'm Open Assistant, I'm here to help you with any task that can be described through natural language. You can ask me to assist you in various tasks, such as text summarization, question answering, code debugging and generation, or poetry generation, among others. Please type your request and I will try to assist you.
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a00d5a90-46e0-4080-8bcb-1ef4f2a3c132
2023-02-08T17:03:17.941471+00:00
I heard AI is going to take all the jobs away and dominate mankind.
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2023-02-08T15:25:55.796618+00:00
You are using it right now. Write down anything and I will respond as apropriately as I can.
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2023-02-08T19:17:54.157668+00:00
So this is a pure text based interface or can you also generate images? if you cant generate images, could you encode images in base64 encoding and output the resulting ascii data?
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2023-02-08T11:59:47.521074+00:00
Just type your question here.
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2023-02-08T14:49:33.969253+00:00
I meant what are some of the ways that I can take advantage of Open Assistant.
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2023-02-08T15:34:10.886972+00:00
Open Assistant can be used to: - give explanations on a broad range of topics - help you create some nice texts - help you code small programs - give recommendations across a broad range of topics - help you find solutions to small and medium-sized problems Beyond those are many others, basically anything that can be tackled with text. And possibly visual and auditory inputs and outputs in the future. Once it is connected to an external data source and can perform some actions, you may use it to automate some of your tasks. Be aware that you are still responsible of its actions.
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2023-02-08T20:24:03.805057+00:00
sounds interesting... and kind of dangerous. isnt't it?
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2023-02-08T16:12:52.584663+00:00
If you are working on any projects or want to learn about something new, you can let me know what you are struggling with or want to know more about, and I can explain it to the best of my ability. Or you can use me creatively, have a go!
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2023-02-08T19:34:59.755909+00:00
I want to know more about car mechanics
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2023-02-08T15:39:08.856673+00:00
Well, actually I can help in a lot of ways. Especially static and objective facts. I.e. I am very good at explaining who invented the pen or how a typewriter works. Less so about things that change i.e. how was the weather last week and are there reason to believe it would be sunny soon. Also I'm less good at things that are not subjective. I.e. rate these films Matrix, Lord of the rings and Superman. I might be able to give you the IMDB rating for each, but really, would that be helpful? Also think of me as an assistant. I probably shouldn't solve the problem, but I probably should give you data to make it a lot faster or give you the ability to answer better.
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2023-02-07T12:45:34.944180+00:00
Nenne 5 Zitate die falsch zugeordnet zu einem Finanzminister passen und witzig sind
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2023-03-21T20:58:27.501341+00:00
Hier sind 5 lustige Zitate von verschiedenen Personen, die auch von einem Finanzminister hätten sein können: - "*Man muß die Tatsachen kennen, bevor man sie verdrehen kann.*" - Mark Twain - "*Bankraub ist eine Unternehmung von Dilettanten. Wahre Profis gründen eine Bank.*" - Bertolt Brecht - "*Die Steuer hat mehr Menschen zu Lügnern gemacht als der Teufel.*" - Will Rogers - "*Wenn das die Lösung ist, hätte ich gern mein Problem zurück!*" - Nelly Arnold - "*Man hat mir unterstellt, ich sei vulgär. Aber das ist totaler Bullshit!*" - Mel Brooks
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2023-03-22T22:22:05.132917+00:00
Kannst du mir alle Finanzminister aufzählen?
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Liste der Bundesfinanzminister der Bundesrepublik Deutschland seit 1949: Fritz Schäffer (1949-1957) Franz Etzel (1957-1961) Heinz Starke (1961-1962) Rolf Dahlgrün (1962-1966) Kurt Schmücker (1966-1969) Alex Möller (1969-1971) Hans Apel (1971-1972) Helmut Schmidt (1972-1974) Hans Apel (1974-1978) Hans Matthöfer (1978-1982) Manfred Lahnstein (1982-1984) Gerhard Stoltenberg (1984-1989) Theo Waigel (1989-1998) Oskar Lafontaine (1998) Hans Eichel (1999-2005) Peer Steinbrück (2005-2009) Wolfgang Schäuble (2009-2017) Peter Altmaier (2017-2018 kommissarisch) Olaf Scholz (2018-2021) Christian Lindner (2021-heute)
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2023-03-28T16:18:26.707056+00:00
Alle Finanzminister welchen Landes?
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Hier ist eine Liste aller Finanzminister (Bundesminister der Finanzen der Bundesrepublik Deutschland) seit 1949: | Name | Lebensdaten | Partei | Amtszeit (Beginn) | Amtszeit (Ende) | |-------|---------------|-------|-------------------|------------------| | Fritz Schäffer | 1888–1967 | CSU | 20. September 1949 | 29. Oktober 1957 | | Franz Etzel 1902–1970 | CDU | 29. Oktober 1957 | 14. November 1961 | | Heinz Starke | 1911–2001 | FDP | 14. November 1961 | 19. November 1962 | | Rolf Dahlgrün | 1908–1969 | FDP | 13. Dezember 1962 | 28. Oktober 1966 | | Kurt Schmücker | 1919–1996 | CDU | 28. Oktober 1966 | 30. November 1966 | | Franz Josef Strauß | 1915–1988 | CSU | 2. Dezember 1966 | 20. Oktober 1969 | | Alex Möller | 1903–1985 | SPD | 22. Oktober 1969 | 13. Mai 1971 | | Karl Schiller | 1911–1994 | SPD | 13. Mai 1971 | 7. Juni 1972 | | Helmut Schmidt | 1918–2015 | SPD | 7. Juni 1972 | 16. Mai 1974 | | Hans Apel | 1932–2011 | SPD | 16. Mai 1974 | 15. Februar 1978 | | Hans Matthöfer | 1925–2009 | SPD | 16. Februar 1978 | 28. April 1982 | | Manfred Lahnstein | * 1937 | SPD | 28. April 1982 | 1. Oktober 1982 | | Gerhard Stoltenberg | 1928–2001 | CDU | 4. Oktober 1982 | 21. April 1989 | | Theo Waigel | * 1939 | CSU | 21. April 1989 | 27. Oktober 1998 | | Oskar Lafontaine | * 1943 | SPD | 27. Oktober 1998 | 18. März 1999 | | Werner Müller (kommissarisch) | 1946–2019 | parteilos | 18. März 1999 | 12. April 1999 | | Hans Eichel | * 1941 | SPD | 12. April 1999 | 22. November 2005 | | Peer Steinbrück | * 1947 | SPD | 22. November 2005 | 28. Oktober 2009 | | Wolfgang Schäuble | * 1942 | CDU | 28. Oktober 2009 | 24. Oktober 2017 | | Peter Altmaier (kommissarisch) | * 1958 | CDU | 24. Oktober 2017 | 14. März 2018 | | Olaf Scholz | * 1958 | SPD | 14. März 2018 | 8. Dezember 2021 | | Christian Lindner | * 1979 | FDP | 8. Dezember 2021 | amtierend |
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2023-03-28T16:29:04.181944+00:00
Okay, ich meinte aber alle Finanzminister von Österreich.
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658f8555-943c-4754-9402-7b96949face2
2023-03-21T21:39:53.212674+00:00
Achtung! Obwohl es belustigend sein kann falsche Zitate als Witz zu verwenden, sollten wir jedoch sicherstellen, dass wir das Publikum darüber informieren, dass es sich um ein erfundenes Zitat handelt und dass es nicht als Fakt verstanden wird. Im Zweifelsfall ist es immer besser, Zitate von vertrauenswürdigen Quellen zu verwenden, um Fehlinformationen und Missverständnisse zu vermeiden. Falschzitate zu verbreiten ist nicht nur irreführend, sondern kann auch schädlich sein, besonders wenn sie in einem Kontext verwendet werden, der ernsthafte Konsequenzen hat. Nach dieser Warnung nun zu den falsch zugeordneten Zitaten, um die Sie mich gebeten haben: - "Das Geld liegt auf der Fensterbank, Marie!" - Wolfgang Schäuble (falsch zugeordnet) - "Das Geld kann man nur einmal ausgeben." - Peer Steinbrück (falsch zugeordnet) - "Reich werden ist Glückssache, arm bleiben ist Dummheit." - Olaf Scholz (falsch zugeordnet) - "Geld allein macht nicht glücklich. Es gehören auch noch Aktien, Gold und Immobilien dazu." - Christian Lindner (falsch zugeordnet) - "Ein Mann ohne Geld ist wie ein Fisch ohne Fahrrad." - Hans Eichel (falsch zugeordnet)
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2023-03-22T22:20:28.500975+00:00
Finde mir ein paar Christian Lindner Zitate, die aus dem Kontext gerissen total komisch sind.
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