Monday, 1 June 2020

Let’s talk about MEMORY !!!!


Let’s talk about MEMORY !!!!

 

Memory Hierarchy

A memory unit is the collection of storage units or devices together. The memory unit stores the binary information in the form of bits. Generally, memory/storage is classified into 2 categories:

       Volatile Memory: This loses its data, when power is switched off.

       Non-Volatile Memory: This is a permanent storage and does not lose any data when power is switched off.

 The total memory capacity of a computer can be visualized by hierarchy of components. The memory hierarchy system consists of all storage devices contained in a computer system from the slow Auxiliary Memory to fast Main Memory and to smaller Cache memory.

 

 

Auxillary memory access time is generally 1000 times that of the main memory, hence it is at the bottom of the hierarchy.

 

 The main memory occupies the central position because it is equipped to communicate directly with the CPU and with auxiliary memory devices through Input/output processor (I/O).

 When the program not residing in main memory is needed by the CPU, they are brought in from auxiliary memory.

 Programs not currently needed in main memory are transferred into auxiliary memory to provide space in main memory for other programs that are currently in use.

 The cache memory is used to store program data which is currently being executed in the CPU. Approximate access time ratio between cache memory and main memory is about 1 to 7~10

 

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Saturday, 30 May 2020

What is exactly Heisenberg’s uncertainty principle?




Let's start discuss on it---

According to Classical mechanics, a moving particle at any instant has fixed position in space and definite momentum which can be determined simultaneously with any desired accuracy. This assumption is true for objects of appreciable size, but fails in particles of atomic dimensions.

 

·         Since a moving atomic particle has to be regarded as a de-Broglie wave group, there is a limit to measure particle properties.

·         If the group is considered to be narrow, it is easier to locate its position, but the uncertainty in calculating its velocity and momentum increases.

·         If the group is wide, its momentum is estimated easily, but there is great uncertainty about the exact location of the particle.

 

Heisenberg a German scientist in 1927, gave uncertainty principle which states that “The determination of exact position and momentum of a moving particle simultaneously is impossible’’.

In general, if x represents the error in measurement of position of particle along x-axis, and p represents error in measurement of momentum, then

                                                                              x. p = h

Or limitation to find the position and momentum of a particle is

                                                                           (x).(p) ≥ h/4π

i.e. Heisenberg uncertainty principle states that both the position and momentum  cannot be measured simultaneously with perfect accuracy.

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Friday, 29 May 2020

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Thursday, 28 May 2020

Let's discuss today about the “DEVELOPMENT OF MICROSTRUCTURES IN IRON–CARBON ALLOYS”



Today we talk about the “DEVELOPMENT OF MICROSTRUCTURES IN IRON–CARBON ALLOYS”.

Phase changes that occur upon passing from the ϒ region into the ∝ + Fe3phase field are relatively complex. 

Consider, for example, an alloy of eutectoid composition (0.76 wt% C) as it is cooled from a temperature within the ϒ phase region, say, 800˚C, that is, beginning at point a and moving down the vertical line xx’. Initially, the alloy is composed entirely of the austenite phase having a composition of 0.76 wt% C and corresponding microstructure. As the alloy is cooled, there will occur no changes until the eutectoid temperature (727˚C) is reached.

 

The microstructure for this eutectoid steel that is slowly cooled through the eutectoid temperature consists of alternating layers or lamellae of the two phases (and Fe3C) that form simultaneously during the transformation. In this case, the relative layer thickness is approximately 8 to 1. This microstructure point b, is called pearlite because it has the appearance of mother of pearl when viewed under the microscope at low magnifications.

 

 

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