You Have A Network That Uses A Logical Bus Topology How Do Messages Travel Through The Network?

In a logical bus topology, messages travel through the network in a linear fashion. That is, each node in the network is connected to a common bus, and each node can receive or transmit messages to any other node on the bus. This type of topology is often used in small networks, such as home or office networks.

Physical Star and Logical Bus Topologies

How do messages travel through the network?

Messages travel through the network by means of communication channels. Communication channels can be either physical or logical. Physical channels are the actual wires or other medium that carry the signal, while logical channels are the conceptual pathways that the signal travels.

How do messages travel in a ring network topology?

A ring network topology is a network architecture in which nodes are interconnected in a loop. Data travels around the loop in one direction, from node to node, until it reaches its destination.Ring networks are typically used in local area networks (LANs). One advantage of ring network topologies is that they can be easily expanded. Another advantage is that data can be transmitted at high speeds, because there is no need to wait for all nodes to finish transmitting before starting to transmit again.One disadvantage of ring network topologies is that if one node fails, the entire network can fail. Another disadvantage is that data must travel all the way around the loop before it reaches its destination, which can cause delays.

How information travels in bus topology?

In bus topology, information travels in a linear fashion from one node to another. This means that each node is connected to a central bus, and information travels along this bus from one node to the next. This type of topology is very simple and easy to implement, but it can be less reliable than other topologies due to the fact that if the bus is damaged, all of the nodes on the bus will be affected.

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What is a logical bus topology?

A logical bus topology is a topology in which devices are connected to a shared bus. A bus is a communication medium that allows devices to communicate with each other. Devices that are connected to the bus can either be active or passive. Active devices are devices that can initiate communication on the bus. Passive devices are devices that can only respond to communication from active devices.

How messages sent from one device to another in a network?

In a network, messages are sent from one device to another using a variety of protocols. The most common protocol is the Transmission Control Protocol (TCP), which is used to send data over the Internet. Other protocols include the User Datagram Protocol (UDP), which is used for streaming media, and the Simple Mail Transfer Protocol (SMTP), which is used for email.

How do networks send messages or data to other networks?

Networks send messages or data to other networks by using a variety of communication protocols. These protocols define how the data is formatted, how it is transmitted, and how it is received. The most common protocols are TCP/IP, UDP, and HTTP.

How communication and transmission process happen in ring topology?

In ring topology, each device on the network is connected to two other devices, forming a ring. Data travels around the ring in one direction, from device to device. Each device receives the data and then passes it on to the next device in the ring.If one of the devices on the ring fails, the data can still be sent around the ring, as there is a redundant path. The data travels from the source to the destination via the shortest path. Ring topology is therefore very fault tolerant.

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What is bus topology with example?

1. Bus topology is a network topology in which each node is connected to a shared central bus.
2. This bus carries all data transmissions between nodes.
3. Bus topology is often used in small, local area networks (LANs).
4. One advantage of bus topology is that it is relatively simple to implement and does not require special network cabling.
5. A disadvantage of bus topology is that if the central bus fails, the entire network fails.
6. In addition, bus topology can be susceptible to data collisions if too many nodes attempt to transmit data at the same time.

In which of the following is the signal travels around the network from one computer to another in a logical ring?

In a logical ring topology, the signal travels around the network from one computer to another in a logical ring. This type of topology is often used in fiber optic networks, where the signal can travel around the ring without being disrupted by electrical interference.

How do I send a message to bus topology?

To send a message over a bus topology, the message must first be encoded into a signal that can be sent over the bus. The signal is then sent over the bus to the intended recipient. The recipient decodes the signal and extracts the message.

Which protocol is used in bus topology?

1. There are several different types of bus topology, each using a different protocol.
2. The most common type is the Ethernet bus, which uses the CSMA/CD protocol.
3. This protocol allows multiple devices to share the bus, with each device taking turns to transmit data.
4. Other types of bus topology include the Token Ring bus, which uses the Token Passing protocol, and the Fiber Distributed Data Interface (FDDI) bus, which uses the Fiber Distributed Data Interface (FDDI) protocol.

How is a bus topology setup?

A bus topology is a network topology in which nodes are connected to a common bus cable. The bus topology is relatively simple to setup and does not require special configuration. Each node in the network is connected to the bus cable, and the bus cable typically runs along the perimeter of the network. The bus topology is typically used in small networks, as it is not scalable and can be susceptible to cable failure.

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How does a logical topology work?

1. A logical topology is a mathematical representation of a network.
2. It shows how the network is organized and how the different components of the network are interconnected.
3. The logical topology does not necessarily correspond to the physical topology of the network.

What is an example of logical topology?

A logical topology is a way of representing a network in which the logical connections between nodes are represented, without regard to the physical layout of the network. For example, a star topology is a logical topology in which each node is connected to a central node, without regard to the physical layout of the network.

What are the types of logical topology?

There are two main types of logical topology: bus and star. A bus topology uses a common bus to connect all devices on the network. A star topology uses a central device, typically a switch, to connect all other devices on the network. Each device on a bus or star topology has its own dedicated connection to the common bus or central device.

How can we send message to star topology?

There are several ways to send a message to a star topology. One way is to use a satellite. Another way is to use a radio telescope. yet another way is to use a laser.Satellites are used to relay messages from one point on the earth to another. Radio telescopes are used to listen for signals from space. Lasers can be used to communicate with spacecraft.

How does star topology transmit data?

Star topology is the most popular and widely used topology in computer networks. In this type of topology, each node is connected to a central node, which acts as a hub. The hub is responsible for receiving and transmitting data to and from the nodes. The advantage of star topology is that it is very simple to manage and troubleshoot. If one node goes down, the rest of the network is not affected.

Which topology is used on the Internet?

The Internet is a vast network of computers and other devices that are connected together. The topology that is used on the Internet is a mesh topology. In a mesh topology, each device is connected to every other device in the network. This provides a great deal of flexibility and redundancy, as each device can act as a backup for every other device in the network.