Предмет: Биология, автор: пдоапшлбэзуалп

перечислить все органоиды животной клетки после названия каждого органоида записать их вункцию

Ответы

Автор ответа: Аноним
0
Клеточная мембрана- Отделяет содержимое клетки от наружной среды,пропускает внутрь клетки одни вещества,а из клетки другие.
Вакуоль- Играет важную роль в пищеварении,обеспечивает относительно постоянный состав цитоплазмы.
Ядро- Является информационным центром клетки,отвечает за процессы хранения,изменения и реализации наследственной информации.
Эндоплазматическая сеть- Система синтеза и трансформации белков.
Рибосомы- На рибосомах происходит синтез белка.
Митохондрии- Обеспечивают процессы дыхания в клетке.
Аппарат Гольджи- Место накопления,сортировки,упаковки и дальнейшего транспорта веществ по клетке.
Лизосомы- Способны расщеплять белки,жиры,углеводы и нуклеиновые кислоты.
Клеточный центр- Принимает участие в делении клеток животных,образуя веретено деления,формирует цитоскелет.

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Предмет: Английский язык, автор: арлпсрплпарлр
Текст перевести:
Text 3. THE FIRST ELECTRONIC COMPUTERS
1. The ENIAC (1943-1946)
The first all-electronic computer, the Electronic Numerical Integrator and Calculator (ENIAC) was developed at the Moore School of Electrical Engineering of the University of Pennsylvania. It was developed as a result of a military need. J. Presper Eckert and John Mauchly proposed the machine to solve the problem of calculating firing tables for new weapons.
The ENIAC weighed 90 tons, its 18,000 vacuum tubes demanded 140 kilowatts of electric power. Although it was fully electronic, the ENIAC had two major shortcomings: it could store and manipulate only a very limited amount of information, and its programs were wired on board. Since its programs were hardwired — that is, the programs operating the computer were established by physically changing the patterns of the wires interconnecting the vacuum tubes — the machine was not so flexible in operation. These limitations made it difficult to detect errors and to change the programs. And yet, the project was successful and the ENIAC was used for many years to solve ballistic problems.
2. The EDVAC (1946-1952)
Although the idea of an automatic computing engine occurred first to Charles Babbage in 1832, it was more than a century later, in 1945, that John von Neumann set out the principles that fixed the pattern of computer design. Dr. John von Neumann, professor of mathematics at the Prinston Institute of Advanced Study, together with P. Eckert, J. Mauchly and Goldstine became a project member of a new improved computer, the Electronic Discrete Variable Computer (EDVAC).
Von Neumann was a major contributor to the project as he developed the concept of storing instructions as well as data in the memory of the computer. As a result it became possible to replace the writing board, which so seriously handicapped the operation of the ENIAC. Von Neumann is also given a share of the credit for introducing the idea of storing both instructions and data in a binary code instead of decimal numbers or human-readable words.
3. The UNIVACI (1951)
P. Eckert and J. Mauchly left the EDVAC project to form their own company and built the UNIVAC I computer. UNIVAC stands for UNIVersal Automatic Computer. The first UNIVAC was installed in the Census Bureau in 1951, and it was used continuously for 10 years. From the University laboratories the computer finally entered the wider world in 1951 with the invention of first UNIVAC I. It was the first digital computer which was not “one of a kind,” it was produced in quantity. In 1952 IBM (International Business Machine) introduced the 701 commercial computer. Although limited in storage capacity by modern standards, the 701 could add a column of 10-digit numbers as tall as the Empire State Building in one second. Very soon improved models of the UNIVAC I and other 701-series machines were introduced. In 1953 IBM produced the IBM 650, which used a magnetic drum for storage and was popular with business and science.