What is the bitrate for each of the following signals

what is the bitrate for each of the following signals

What is the bit rate for each of the following signals? a. A signal in which 1 bit lasts s. b. A signal in which 1 bit lasts 2 ms. c. A signal in which 10 bits last 20 ?s%(3). Jan 15,  · What is the bit rate for each of the following signals? a. A signal in which 1 bit lasts s. b. A signal in which 1 bit lasts 2 ms. c. A signal in which 10 bits last 20 J-ls.

Questions Courses. Ot is the bit rate ofthe following signals? A signal in which bit lasts for 0. A signal in which bit lasts for 2ms c. A signal in which bits lasts forpicoseconds. Jan 06 AM. Swaswata G answered on January 08, what is the bitrate for each of the following signals Bit rate is the i of bits per second. Do you need an answer to a question different from the above? Ask ie question! Help us make birrate solutions better.

We want to correct this solution. Tell us more. Was the final answer of the question wrong? Were the solution steps not detailed enough? Was the language and grammar an issue? We followint your Feedback Stay Solved :. Didn't find yours? Ask a new question Get plagiarism-free solution within 48 hours. Review Please. Next Previous. Related Questions. A signal in which. What is the bit rate for each of the off signals?

A signal in which 1 bit lasts 0. A signal in which 1 bit lasts 2 ms c. A signal in which 10 bits last 20 J-ls. Which signal has a wider bandwidth, a sine wave with a frequency of Hzvb or a sine wave with Which signal has a wider bandwidth, a sine wave with a frequency of Hzvb or a sine wave with a frequency of Hz? A signal in which 1 bit The enterprise administrator has assigned Arthur the network address Arthur calculates that this gives him 27 IP addresses, which is enough for his network, but he has Consider a demand paging system with a paging disk that has an average access and transfertime of Consider a demand paging system with a paging disk that has an average access and transfertime of 20 milliseconds.

Addresses are translated through a page table in main memory, withan access of wat 1 microsecond per memory access. Ths, each memory A terrestrial wireless point-to-point broadband communication system is established at 2. The height of the transmitter and the receiver antenna is each 50 meters and the separations 10 kilometers. The receiver sensitivity is 10 -5 watts SupposeAn ISP is granted a block of addresses starting with The ISP wants The ISP wants todistribute these blocks to three groups of customers as follows.

In Figure Fill in the data frame followingg the appropriate addresses between each pair of nodes. What are the disadvantages of SNMP as a Suppose a whag has 80 interfaces and performance data are tthe be collected from the interface Suppose a router has how to use the stock market in gta v interfaces and performance data are to be collected from the interface table.

Also calculate the bandwidth Fill the ifTable objects for a three-sector base station and one subscriber station for each Fill the ifTable objects for a three-sector base station and one subscriber station for each sector shown. The tables should represent reasonable and valid values as they appear in the database of an NMS.

Assume that sector 1 is completely List and describe the four basic functions what is the bitrate for each of the following signals an application software package in the physical layer List and describe the four basic functions of an application software package in the physical layer. Create an Account and Get the Solution. Log into your existing Transtutors account. Have an account already?

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Jan 25,  · What is the bit rate for each of the following signals? a. A signal in which 1 bit lasts s. b. A signal in which 1 bit lasts 2 ms. c. A signal in which 10 bits last Answer Save. 1 Answer. Relevance. Ed D. 1 decade ago. Favourite answer. a 1 bits/second. b bits per second. What is the bit rate for each of the following signals: a. A signal in which 1 bit lasts s b. A signal in which 1 bit lasts 2ms c. A signal in which 10 bits last 20µs A signal . What is the bit rate for each of the following signals? a. A signal in which 1 bit lasts s b. A signal in which 1 bit lasts 2 ms c. A signal in which 10 bits last 20 ?s. a. bit rate = 1/ (bit duration) = 1 / ( s) = bps = 1 Kbps.

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Are you sure you want to Yes No. Noor Fatima. Show More. No Downloads. Views Total views. Actions Shares. No notes for slide. We need to send kbps over a noiseless channel with a bandwidth of 20 kHz.

How many signal levels do we need? If we have levels, the bit rate is kbps. If we have 64 levels, the bit rate is kbps. Consider an extremely noisy channel in which the value of the signal-to-noise ratio is almost zero. In other words, the noise is so strong that the signal is faint. For this channel the capacity C is calculated as -?? In other words, we cannot receive any data through this channel with any bandwidth. In these cases, the theoretical channel capacity can be simplified to -??

We have a channel with a 1-MHz bandwidth. The SNR for this channel is What are the appropriate bit rate and signal level? For better performance we choose something lower, 4 Mbps, for example. Then we use the Nyquist formula to find the number of signal levels.

We measure the performance of a telephone line 4 KHz of bandwidth. When the signal is 20 V, the noise is 6mV. What is the maximum data rate supported by this telephone line? A device is sending out data at the rate of bps.

How long does it take to send out bits? How long does it take to send out a single character 8 bits? How long does it take to send a file of , characters? If the bandwidth of the channel is 8 kbps, how long does it take to send a frame of , bits out of this device? What is the bit rate for the signal in the following figure? What is the bit rate for each of the following signals?

A signal in which 2 bit lasts 0. A signal in which 5 bit lasts 4 ms c. A line has a signal-to-noise ratio of and a bandwidth of KHz. What is the maximum data rate supported by this line? What is the transmission time of a packet sent by a station if the length of the packet is 1 million bytes and the bandwidth of the channel is Kbps?

What is the theoretical capacity of a channel in each of the following cases: a. We have a channel with 5 KHz bandwidth. What is SNR? A signal with L levels actually can carry log2L bits per level. We can use the formula to find the quantization. Increasing the number of levels increases the SNR.

A telephone subscriber line must have an SNRdB above What is the minimum number of bits per sample? Find the 8-bit data stream for each case depicted in the following figure. We have a baseband channel with a 2-MHz bandwidth.

What is the data rate for this channel if we use one of the following line coding schemes? NRZ-L b. Manchester Sol.

What is the Nyquist sampling rate for each of the following signals? A low-pass signal with bandwidth of KHz? A band-pass signal with bandwidth of KHz if the lowest frequency is KHz?

A Manchester signal has a data rate of Kbps. An analog signal has a bandwidth of 40 KHz. We have sampled a low-pass signal with a bandwidth of KHz using levels of quantization. Calculate the bit rate of the digitized signal.

Calculate the SNRdB for this signal. What is the maximum data rate of a channel with a bandwidth of KHz if we use four levels of digital signaling? What is the required bandwidth for the following cases if we need to send bps?

ASK b. QPSK d. Calculate the bit rate for the given baud rate and type of modulation. What is the number of bits per baud for the following techniques? FSK with 16 different frequencies b. QAM with a constellation of points. A corporation has a medium with a 2-MHz bandwidth low pass. The corporation needs to create 10 separate independent channels each capable of sending at least 10 Mbps. The company has decided to use QAM technology.

What is the minimum number of bits per baud for each channel? What is the number of points in the constellation diagram for each channel? Calculate the baud rate for the given bit rate and type of modulation. Draw the constellation diagram for the following: a.

ASK, with peak amplitude values of 2 and 4 b. BPSK, with a peak amplitude value of 3 c. QPSK, with a peak amplitude value of 4 d. We have two signal elements with peak amplitudes 2 and 4. The phase of both signal elements are the same, which we assume to be 0 degrees. We have two signal elements with the same peak amplitude of 3.

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