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CS302 GDB Solution Spring 2012

Importance of Memory Elements in Digital Circuits

Solution:
We know that there are circuits in which theoutput at any instant of time depends not only on the present input of thesystem but also on the past outputs obtained by the system. Such logic circuitsare called sequential logic circuits. We know that sequential logic circuitdepends also on the past output of the system. So they require a memory elementto store the past outputs. For this purpose the flip-flops are used. 
Flip-flops are nothing but thememory elements used in the sequential circuits for storing the past output ofthe system. A flip-flop circuit can maintain a binary state indefinitely untildirected by any input signal to switch states. So proved that memory elementare essential for digital circuits because these memory elements are the backbone of digital circuits and these are required to store the outputs

Solution 2:
Digital electronics represent signals by discrete bands of analog levels, rather than by a continuous range. All levels within a band represent the same signal state. Relatively small changes to the analog signal levels due to manufacturing tolerance, signal attenuation or parasitic noise do not leave the discrete envelope, and as a result are ignored by signal state sensing circuitry.
In most cases the number of these states is two, and they are represented by two voltage bands: one near a reference value (typically termed as “ground” or zero volts) and a value near the supply voltage, corresponding to the “false” (“0″) and “true” (“1″) values of the Boolean domain respectively.
Digital techniques are useful because it is easier to get an electronic device to switch into one of a number of known states than to accurately reproduce a continuous range of values.
Digital electronic circuits are usually made from large assemblies of logic gates, simple electronic representations of Boolean logic functions.

Advantages
One advantage of digital circuits when compared to analog circuits is  signals represented digitally can be transmitted without degradation due to noise. For example, a continuous audio signal, transmitted as a sequence of 1s and 0s, can be reconstructed without error provided the noise picked up in transmission is not enough to prevent identification of the 1s and 0s. An hour of music can be stored on a compact disc using about 6 billion binary digits.
In a digital system, a more precise representation of a signal can be obtained by using more binary digits to represent it. While this requires more digital circuits to process the signals, each digit is handled by the same kind of hardware. In an analog system, additional resolution requires fundamental improvements in the linearity and noise characteristics of each step of the signal chain.
Computer-controlled digital systems can be controlled by software, allowing new functions to be added without changing hardware. Often this can be done outside of the factory by updating the product’s software. So, the product’s design errors can be corrected after the product is in a customer’s hands.
Information storage can be easier in digital systems than in analog ones. The noise-immunity of digital systems permits data to be stored and retrieved without degradation. In an analog system, noise from aging and wear degrade the information stored. In a digital system, as long as the total noise is below a certain level, the information can be recovered perfectly.

CS609 Assignment 05 solution

S.No.
Question
Answer
1
Whether this entry represents an active partition? (3 marks)
No
2
What is the starting CHS address of the partition represented by this entry? Give answer in proper (C, H, S) format. (4 marks)
(1016, 161, 1)
3
What type of partition is represented by this entry? (3 marks)
FAT32
4
What is the ending CHS address of the partition represented by this entry? Give answer in proper (C, H, S) format. (4 marks)
(1023, 9, 63) Not confirm
5
What is the starting Sector of the partition represented by this entry? (3 marks)
63
6
What is the size of the partition represented by this entry? (in sectors) (3 marks)
20482812

CS610 GDB Solution Spring 2012


Do you think wireless networks will totally replace the wired or fixed networks in coming future? Prove validity of your opinion.

Idea Solution:
• Wired Local Area Networks make use of Ethernet cables and network adapters. Numerous computers can be wired to one another by using an Ethernet crossover cable. Wired LANs also need vital devices like hubs, switches, or routers to aid further computers.
• For dial-up connections to the Internet, the computer hosting the modem should administer Internet Connection Sharing or similar software to share the connection with every other computers on the network.
Broadband routers permit easier sharing of cable modem or DSL Internet connections, furthermore they often include built-in firewall.
• Ethernet cables should proceed from each computer to a different computer or to the central device.
• The accurate cabling configuration for a wired LAN differs depending on the merge of devices, the form of Internet connection.
• Following hardware installation, the lasting steps in configuring either wired or wireless LANs do not contrast a great deal. Equally rely on standard Internet Protocol and network operating system configuration options.
Advantages and Disadvantages of Wired Networking
advantages:
• The equipment is inexpensive.
• Many computers have a wired network adapter.
• Wired networks transfer information more swiftly
• Wired networks are generally more secure than wireless networks
disadvantages:
• Running the wires from each room within the home can be a difficult task.
• Network cables can look disorganized.
• Network cables can disconnect or become faulty consequently causing the connection to fail.
• Adding more computers to a wired network may result in unexpected expense if you run out of connections on your network and could slow down the network.
All wired networks differ from each other. The most familiar type of wired network is an Ethernet network.


Wireless vs. Wired 
There are two kinds of network technologies:
• Wireless - communicates through radio waves
• Wired - communicates through data cables (most commonly Ethernet-based)

Why choose a wireless network?

Wireless networks don't use cables for connections, but rather they use radio waves, like cordless phones. The advantage of a wireless network is the mobility and freedom from the restriction of wires or a fixed connection. The benefits of having a wireless network include:
• Mobility and freedom - work anywhere
• No restriction of wires or a fixed connection
• Quick, effortless installation
• No cables to buy
• Save cabling time and hassle
• Easy to expand
Also known as Wi-Fi, or Wireless Fidelity, wireless networks allow you to use your network devices anywhere in an office or home, even out on the patio. You can check your e-mail or surf the Internet on your laptop anywhere in your house. There is no need to drill holes in the wall and install Ethernet cables. You can network anywhere - without wires. Outside your home, wireless networking is available in public "hotspots," such as coffee shops, businesses, hotel rooms, and airports. This is perfect for those of you who do a lot of traveling.

Why choose a wired network?

Wired networks have been around for decades. Wired networking technology found today is known as Ethernet. The data cables, known as Ethernet network cables or wired (CAT5) cables, connect computers and other devices that make up the networks. Wired networks are best when you need to move large amounts of data at high speeds, such as professional-quality multimedia. The benefits of having a wired network include:
• Relatively low cost
• Offers the highest performance possible
• Fast speed - standard Ethernet cable up to 100Mbps.
• Faster speed - Gigabit Ethernet cable up to 1000Mbps

WLAN vs LAN
LAN stands for Local Area Network, which is a collection of computers and other network devices in a certain location that are connected together by switches and/or routers that facilitate the communication of the network elements. Each computer or network element is connected to the switches/routers via a UTP cable. The added letter in WLAN stands for wireless. This is a type of network where the data is not transmitted via cables but over the air through the use of wireless transmitters and receivers.WLANs are deployed in areas where a wide number of computers may connect to the network but not at the same time. Places like coffee shops often add WLAN to their shops to entice more customers who do not stay for extended periods. Even at home where you have a somewhat fixed number of computers that connect to the network, WLAN is also preferred as it gives users the freedom to move around the house and carry their laptops with them without needing to fuss with cables. For areas where the computers are pretty much fixed, a wired LAN is very desirable due to the advantages that it offers.First off, a wired LAN is much faster compared to a WLAN. Most wireless routers nowadays are limited to a theoretical maximum speed of 54mbps while a contemporary wired LAN has a bandwidth of 100mbps. Gigabit network equipment can even ramp this up to 1000mbps or 1Gbps. This might not be such a big issue for browsing the internet or sending email but when you are copying large files, it can take a while with a WLAN.WLANs are also vulnerable to attack as just about anyone with a strong enough transceiver is able to detect the signal. Access can then be achieved by breaking the encryption used by the router through certain software. The information that is being transmitted through the WLAN can also be collected by malicious person and used in a variety, often destructive, ways. In order to intercept data in a wired LAN, you need to physically connect to a switch or a router.Summary:1. LAN refers to a wired network while WLAN is used to refer to a wireless network.2. LAN is commonly used in fixed networks while WLAN is common in areas where computers are moved quite often.3. WLAN is more convenient to users compared to LAN.4. LAN is much faster compared to WLAN.5. LAN is more secure compared to WLAN.