1,302 research outputs found

    Policy-agnostic programming on the client-side

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    Browser security has become a major concern especially due to web pages becoming more complex. These web applications handle a lot of information, including sensitive data that may be vulnerable to attacks like data exfiltration, cross-site scripting (XSS), etc. Most modern browsers have security mechanisms in place to prevent such attacks but they still fall short in preventing more advanced attacks like evolved variants of data exfiltration. Moreover, there is no standard that is followed to implement security into the browser. A lot of research has been done in the field of information flow security that could prove to be helpful in solving the problem of securing the client-side. Policy- agnostic programming is a programming paradigm that aims to make implementation of information flow security in real world systems more flexible. In this paper, we explore the use of policy-agnostic programming on the client-side and how it will help prevent common client-side attacks. We verify our results through a client-side salary management application. We show a possible attack and how our solution would prevent such an attack

    Vehicle to vehicle (V2V) wireless communications

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    This work focuses on the vehicle-to-vehicle (V2V) communication, its current challenges, future perspective and possible improvement.V2V communication is characterized by the dynamic environment, high mobility, nonpredective scenario, propagation effects, and also communicating antenna's positions. This peculiarity of V2V wireless communication makes channel modelling and the vehicular propagation quite challenging. In this work, firstly we studied the present context of V2V communication also known as Vehicular Ad-hoc Netwok (VANET) including ongoing researches and studies particularly related to Dedicated Short Range Communication (DSRC), specifically designed for automotive uses with corresponding set of protocols and standards. Secondly, we focused on communication models and improvement of these models to make them more suitable, reliable and efficient for the V2V environment. As specifies the standard, OFDM is used in V2V communication, Adaptable OFDM transceiver was designed. Some parameters as performance analytics are used to compare the improvement with the actual situation. For the enhancement of physical layer of V2V communication, this work is focused in the study of MIMO channel instead of SISO. In the designed transceiver both SISO and MIMO were implemented and studied successfully

    Statistical analysis of protein molecules

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    In this paper, entropy and auto-correlation values of main chain dihedral angles of 22,356 protein molecules are calculated and found to lie within a well-specified range for most proteins. Also, the entropy values obey a Gaussian distribution, which indicates that entropy plays a crucial role in evolution and conservation of protein tertiary structures. A comparison of the auto-correlation values of the dihedral angles of the entire protein molecule with those of the alpha helices and beta sheets indicates that random coils play an important role in determining the tertiary structure of protein molecules

    Plasmodium falciparum has rare correlation properties

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    A plot of the correlation function of a given DNA sequence has certain characteristic features common to almost all organisms. One common feature is that the correlation values at distances that are multiples of three is higher than correlation values at other distances. Because of this such a correlation plot can be divided into two or three curves with different scalings. P. falciparum has a rare correlation property which is probably unique. I have analyzed genomes of many bacteria, fungi and protozoa and found that P. falciparum is the only organism whose DNA sequence correlation plot can be divided into four curves with different scalings. This property is neither shared by other species of the Plasmodium genus nor by other AT rich genomes. This could be a hint that the DNA sequence of P. falciparum has undergone certain rare mutational events.
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    Dynamics of proteins and DNA in a Paul trap

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    Paul traps are increasingly being used in a wide variety of applications in biology including study of protein dynamics and DNA sequencing. In this paper, statistical properties of a macromolecule chain in a Paul trap are theoretically analyzed using a simple model of charged particles connected by rigid rods. It is found that the mean displacement of chain varies linearly with the chain length, showing properties of enhanced diffusion, compared to the normal diffusion relation which exists for the case of a macromolecule chain in a force-free region. The dependence of the mean displacement on the chain length and trap parameters is also found to be very different for the case of pure dc operation and pure ac operation of the Paul trap
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