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Why is BJT called bipolar?
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Why is BJT called active device?
Answer : A **Bipolar Junction Transistor (BJT)** is called an **active device** because it is capable of **amplifying** signals - that is, it can control a large output current or voltage based ... , oscillators, and switching systems. Would you like a visual diagram of how BJT amplifies a signal?...

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Why is BJT called unipolar?
Answer : Actually, a **BJT (Bipolar Junction Transistor)** is not called "unipolar." It's called **bipolar** because it involves both **types of charge carriers** (electrons and holes) in its operation. Here ... carrier-either electrons or holes. So, to clarify: the **BJT** is bipolar, not unipolar....

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Why is it called a BJT?
Answer : BJT stands for **Bipolar Junction Transistor**. It is called **bipolar** because it uses both electrons and holes as charge carriers in its operation. The term **junction** comes from the two PN junctions ... → Works as an amplifier or switch. Would you like a deeper explanation of how it works?...

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Why is BJT so called?
Answer : The term "BJT" stands for **Bipolar Junction Transistor**. Here's the breakdown of the name: 1. **Bipolar**: This refers to the two types of charge carriers involved in the operation of the ... *BJT** refers to a transistor that has two junctions and uses both types of charge carriers to function....

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How does a MOSFET differ from a bipolar junction transistor (BJT)?

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Explain the working principle of a bipolar junction transistor (BJT).

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What are the key differences between a bipolar junction transistor (BJT) and a MOSFET?

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How does a BJT (Bipolar Junction Transistor) work?
Answer : A **BJT (Bipolar Junction Transistor)** is a type of transistor that is widely used in electronic circuits. It has three layers of semiconductor material: **emitter**, **base**, and **collector**, with ... basic operation of a BJT! Let me know if you'd like more details on any specific part of it....

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What is called bipolar?
Answer : "Bipolar" refers to something that has two opposite or contrasting parts. In different contexts, it can have different meanings. Here are a few common uses: 1. **In Electronics**: A bipolar device ( ... and south pole, and you could describe it as bipolar. So, the meaning depends on the context!...

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What are bipolar phases called?
Answer : Bipolar phases, often referred to in the context of electrical engineering, particularly in AC (alternating current) systems, are typically described in terms of **positive** and **negative** phases, or in ... and negative alternations. Let me know if you need more details on any of these aspects!...

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What is called a bipolar transistor?
Answer : A **bipolar transistor** is a type of transistor that uses both electron and hole charge carriers. It is a semiconductor device with three layers of semiconductor material, typically made ... signals makes them essential components in electronics such as radios, amplifiers, and digital circuits....

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Why diode is a bipolar device?
Answer : A diode is generally considered a **unipolar** device because it relies on the movement of **only one type of charge carrier** (electrons or holes) across the junction. In this sense, it isn't ... of charge carrier, typically electrons or holes) - **BJT**: Bipolar (involves both electrons and holes)...

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Why is it bipolar?
Answer : It seems like you're asking about the term *bipolar*, but could you clarify a bit? Are you asking about bipolar *transistors*, *bipolar* disorders, or something else? The term "bipolar" can have different meanings depending on the context, so just wanted to be sure!...

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Why MOSFET is used instead of BJT?
Answer : MOSFETs (Metal-Oxide-Semiconductor Field-Effect Transistors) are often preferred over BJTs (Bipolar Junction Transistors) in many modern electronic applications due to several advantages that MOSFETs offer ... go-to choice for digital logic, power electronics, and most modern semiconductor devices....

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Why is BJT used as an amplifier?
Answer : A Bipolar Junction Transistor (BJT) is commonly used as an amplifier because it can take a small input signal (usually voltage or current) and produce a larger output signal, ... amplification. This makes them versatile and widely used in various electronic devices for signal processing....

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Why are BJT still used?
Answer : **Why are BJTs (Bipolar Junction Transistors) Still Used Today?** Bipolar Junction Transistors (BJTs) have been a fundamental component in electronics since their invention in the 1940s. Despite the ... they are far from obsolete, even in an age dominated by FETs and other advanced technologies....

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Why is BJT named so?
Answer : The term **BJT** stands for **Bipolar Junction Transistor**. It's named this way because: 1. **Bipolar**: This refers to the fact that the transistor uses **both types of charge ... that uses both charge carriers (bipolar), has two semiconductor junctions (junction), and functions as a transistor....

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Why BJT is used as an amplifier?
Answer : A **BJT (Bipolar Junction Transistor)** is used as an amplifier because it can control the flow of a large current using a much smaller input current, which is the fundamental principle behind ... signal and amplify it into a much larger output signal, both in terms of current and voltage....

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Why BJT is used as a switch?
Answer : A **BJT** (Bipolar Junction Transistor) is widely used as a switch because of its ability to operate in two distinct states: **saturation** and **cutoff**, which allows it to ... many electronic devices due to their reliability, simplicity, and ability to handle both small and large currents....

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Why is BJT used?
Answer : A **BJT (Bipolar Junction Transistor)** is widely used in electronics because of its ability to amplify signals, switch currents, and control electrical power. Here are the main reasons ... electronic devices, from radios to computers, due to their efficient current control and high performance....

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Why microcontroller is called so?
Answer : The term "microcontroller" comes from its role and the fact that it is a small, integrated version of a computer system, specifically designed to control devices or processes. Let's ... controllers** in electronic systems, managing and controlling various tasks in an efficient and compact manner....

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Why is it called an NAND gate?
Answer : The term **NAND gate** comes from the combination of two logical operations: **NOT** and **AND**. - **AND** is a basic logic operation where the output is **true** (or 1) only if both inputs are true. - ... | As you can see, the output is only **0** (false) when both inputs are **1** (true)....

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Why NAND and NOR gate are called universal?
Answer : NAND and NOR gates are called **universal gates** because they can be used to create **any other logic gate** (like AND, OR, NOT, XOR, etc.) on their own. This means that by combining just NAND ... all other basic gates (AND, OR, NOT, etc.), which are the building blocks for any digital circuit....

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Why is MUX called as data detector?
Answer : A **MUX**, or **Multiplexer**, is sometimes referred to as a **data detector** because of the way it **selects one specific data input** from multiple inputs based on control signals, and forwards that selected data ... | --- Would you like a diagram to visualize how a MUX selects data?...

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Why MUX is called a universal circuit?
Answer : A **Multiplexer (MUX)** is often called a **universal circuit** because it can be used to perform a variety of logical operations. It's a versatile device in digital electronics, and ... is called a **universal circuit**, capable of replacing several basic gates and performing various operations....

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Why is DEMUX called a data distributor?
Answer : A DEMUX (Demultiplexer) is called a **data distributor** because it takes a single input signal and **distributes** or **routes** it to multiple outputs based on a control signal. In other ... input signal to one or more outputs, just like how a distributor would send goods to different locations....

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Why is it called ripple adder?
Answer : A **ripple adder** is a type of digital adder used to perform binary addition. It's called a "ripple" adder because of the way the carry bit propagates (or "ripples") through each bit of the adder. ... "ripple" comes from the way the carry bit "ripples" through the adder stages one bit at a time....

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Why is it called adder?
Answer : The term "adder" in electronics refers to a digital circuit that performs the arithmetic operation of addition. The name "adder" comes from the fact that the circuit is designed specifically to add ... " just reflects the basic function it performs - addition - in the context of digital electronics....

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Why is half adder called so?
Answer : A half adder is called so because it can **add** two single-bit binary numbers, but it **does not handle carry input** from a previous addition. It only adds the two bits and gives the ... half" part refers to its limited functionality compared to a full adder, which can handle carry inputs as well....

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Why is it called a XOR gate?
Answer : The XOR gate, short for **"exclusive OR"**, gets its name because it performs a logical operation that outputs **true only when the inputs are different** - that is, *either* input is true, but * ... or both** inputs are 1. Would you like to see how XOR is implemented using basic logic gates?...

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Why is zero called o?
Answer : The reason zero is often called "O" (the letter) has a lot to do with how the two symbols look and their usage in different contexts. Here's a simple breakdown: 1. **Visual Similarity ... , the use of "O" for zero became common because of their visual resemblance and historical language trends....

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Why is it called quantum?
Answer : The term "quantum" comes from the Latin word *quantus*, which means "how much." In the context of physics, "quantum" refers to the smallest possible unit or "chunk" of something, like ... at the microscopic level can only exist in specific, fixed amounts, rather than a smooth, continuous range....

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Why is it called optical fibre?
Answer : It's called "optical fiber" because it uses **light** (which is part of the "optical" spectrum) to carry signals, and the "fiber" part refers to the **thin, thread-like structure** ... are essentially **light-carrying, thin fibers** that allow for high-speed data transmission over long distances....

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