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Can you list 10 recombinant proteins whi...

Can you list 10 recombinant proteins which are used in medical practice? Find out where they are used as therapeutics (sue the internet).

Text Solution

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Recombinant proteins are obtained from the recombinant DNA technology. This technology involves the transfer of specific genes from an organism into another organism using vectors andrestriction enzymes as molecular tools.
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Knowledge Check

  • In the field of medical diagnosis ultrasound waves are used with Doppler's effect to find the nature of problems in the blood vessels. The ultrasound sent is received after reflection and the properties are analysed using electrical impulses generated from there. If there is any shift in the reflector then the frequency received will differ from the frequency of the incident wave. The doppler shift (in frequency ) is given by Delta=((2v"sin"theta)/c)f_1, where v and c are the speed of the reflector and the wave respectively . theta is the angle of incidence of the incident frequency f_i . Given that f_I=5MHz, theta =30^@,c=1500 ms^(-1), Delta F=1.6 kHz . The speed of blood in the vessel is

    A
    `4.8 cms^(-1)`
    B
    `48 ms^(-1)`
    C
    `0.48 ms^(-1)`
    D
    `0.25 ms^(-1)`
  • In the field of medical diagnosis ultrasound waves are used with Doppler's effect to find the nature of problems in the blood vessels. The ultrasound sent is received after reflection and the properties are analysed using electrical impulses generated from there. If there is any shift in the reflector then the frequency received will differ from the frequency of the incident wave. The doppler shift (in frequency ) is given by Delta=((2v"sin"theta)/c)f_1, where v and c are the speed of the reflector and the wave respectively . theta is the angle of incidence of the incident frequency f_i . The angle phi shown in the figure is related to 0 by

    A
    `phi=0`
    B
    `phi=theta`
    C
    `phi=pi/2`
    D
    `phi=20`
  • Let us take an electrical conductor in which the electrical energy supplied is entirely converted into heat . If , for the conductor , the terminal potential difference = V , the curent through it = I and its resistance = R , then the electrical energy cnsumed in its t is , W=I^(2)t (from Ohm'slaw R=(V)/(I) ) . So , if thr electrical and the heat energies both are expressed in joule , the heat developed in tiem t is H=I^(2)Rt . However , If H is expressed in the conventional unit calorie , then from the law , W = JH , we may write H=(I^(2)Rt)/(J) , where , J = mechanical equivalent of heat =4.2J."cal"^(-1) . The resistance R of a conducting wire depends on its material , its length l and its area of cross section a .The resistivity of the meterial of the conductor is , rho=(RA)/(l) . When more than one heat -producing conductors are kept in series in a circuit , the same current passes through each of them , but as their resistance are f=different in general , the terminal potential differences are also unequal . On the other hand , each conductor has the same terminal potential difference in a parallel combination , however , the curents through them are different . Heat is produced at hte rate of 8"cal".s^(-1) in a uniform wire , when its terminal potential difference is 10 V What would be the rate in another wire of the same material , of the same potential difference ?

    A
    `32"cal".s^(-1)`
    B
    `16"cal".s^(-1)`
    C
    `4"cal".s^(-1)`
    D
    `2"cal".s^(-1)`
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