Rohit Lodhi

I am a highly motivated and organized professional with a passion for problem-solving. I have a strong background in software development and project management,

Student at gyan ganga institute of technology and science

Studied at goverment higher secondary school tewar

Skilled in c programing, content writing, c++

Certified in introduction to cyber security

class 11 th grammer ncert

this pdf consist class 11 th leval english grammer . Grammar is the structure and system of a language. It is a set of rules that determine how words are used and understood. English grammar is the way in which meanings are encoded into wordings in the English language. This includes the structure of words, phrases, clauses, and sentences, right up to the structure of whole texts. English grammar can be a difficult subject for many people to learn. It is important to have a good understanding of the rules of English grammar in order to communicate effectively and accurately. Having a good grasp of English grammar allows you to express your ideas clearly and accurately. It also helps you to better understand what other people are saying and writing.

horizontal patterns in broad-cast arrays in ec branch rgpv

This paper presents a method for detecting horizontal patterns in broad-cast arrays. The method is based on the assumption that the source of the signal is a single point source. The signals are received by a set of receivers which are arranged in a 2D array. The paper proposes a method to detect the presence of a horizontal pattern in the array. The method is based on the principle of maximum likelihood estimation and uses an iterative algorithm to find the maximum likelihood solution

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class 10 th chapter 5 full notes handwritten

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effective area derivation in antenna EC branch rgpv

This is a handwritten note describing an effective area that can be used for a construction project. The note outlines the criteria for selecting an effective area, including the size, topography, soil, climate, and location. It also provides information about the potential for success and potential risks associated with the area. The note also includes a list of resources that can be used to assess the potential for success. Finally, the note provides recommendations for how to proceed with the project, including consulting with experts and conducting a feasibility study.

class 10 sanskrit chapter 1 notes

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RESONANT ANTENNAS IN EC BRANCH RGPV

This pdf document is a complete guide to resonant antennas. It covers the fundamentals of antenna theory and design, as well as practical applications and design considerations. Topics include antenna resonant frequencies, antenna gain, antenna directivity, antenna polarization, antenna radiation patterns, antenna efficiency, antenna matching, and antenna construction. The document also covers antenna placement and maintenance, antenna measurement, antenna noise, antenna array design, and antenna optimization. The document includes numerous examples and illustrations to help the reader understand the material. It is written in an easy-to-follow style, making it an ideal reference for engineers and technicians working in the field of antenna design and construction.

Far field approximation in Antenna RGPV EC BRANCH

The far field approximation is an important concept in antenna theory that allows us to simplify the calculation of antenna fields in the far field region. The far field is defined as the region at least one wavelength away from the antenna. In this region, the wavefronts are assumed to be plane waves, so the electric and magnetic fields can be represented as vectors in a single plane. This simplifies the calculation of the fields since they become a function of only one angle, the angle between the vector and the wavefronts (or the direction of the wave). The far field approximation also allows us to estimate the radiation patterns of antennas, which is important for antenna design and analysis.

bionomial array in antenna ec branch rgpv

The binomial array is an important tool in mathematics, especially when working with a large number of variables. It is a rectangular array of numbers arranged in rows and columns. Each row of the array represents a set of data points, with each column representing a single variable. By plotting the data points within the array, we can gain insight into the relationship between the variables. For example, we can use the binomial array to identify trends or patterns in the data. In addition, the array can be used to find the probability of certain outcomes, such as the probability of a certain event occurring. The binomial array is an invaluable tool for analyzing data and understanding the relationships between different variables.

Application of reciprocity theorem in antenna EC branch RGPV

The reciproity theorem is a mathematical theorem that states that the ratio between two voltages or currents at two different points in a network is equal to the ratio between the two impedances or admittances at those points. This theorem is applicable to linear networks in which the elements involved are linear and bilateral. It is widely used in the analysis of electrical and electronic circuits and networks. The reciprocity theorem can be used to simplify the analysis of a network by reducing the number of unknowns and equations. It can also be used to solve for the parameters of a linear, bilateral network, such as the transfer function, input impedance, and output impedance. The reciprocity theorem can be applied to linear and non-linear networks as long as they are linear and bilateral.

antenna fundamentals and theorems in RGPV EC BRANCH

This document contains some of the fundamental principles and theorems related to antennas. It covers topics such as antenna power gain, radiation pattern, directivity, and impedance matching. It also provides a brief description of some of the more common antenna types and their characteristics. The document also covers the topics of antenna polarization, Far-Field Radiation, Radiation Intensity, and Polarization Loss. Additionally, the document explains how to calculate the required antenna size and how to determine the maximum gain of an antenna. Finally, the document provides a brief overview of the Smith Chart and its applications in antenna design.