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Core clock is the actual speed at which the graphics processor on a video card on a computer operates. The core clock speed is measured in megahertz.

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What is the core of an operating system that maintains the computers clock starts applications and assigns the computers resources such as devices programs data and information?

Kernal


How is a computer's clock different from real clock?

A computers clock is a real clock


What is speed in nature of computers?

in computers speed refers to the number of instructions acomputer can execute at every clock pulse


Computers depend on an accurate internal what to allow synchronized processing?

Clock.


What is the price of the latest and best processor of computer?

The latest and best processor for computers would be one of Intel's i7 processors, dependent on clock speeds the amount of core the price will vary, but for an i7 3370k the price is about £223 or $340


Which determines and controls the speed of operations taking place the computers?

Systems clock


What is the system clock speed if the processor core speed is 2191.2 and the multiplier is x22?

obviously about 100 MHz, since the core speed is calculated by multiplying the system clock speed and the given multiplier.


What is the clock rate of a laptop?

Laptops do not have a specific clock speed. The clock speed of the specific processor that is in the laptop determines the clock rate of the computer. For example, my computer runs at a clock speed of 2 GHz. Some computers even have clock speeds close to 4 GHz.


What defrint between xeon and quad core?

Xeon is for servers with server-motherboards Quad core is for desktop computers


What advantage do dual-core processor and quad-core processor have over single-core processor?

The most gaping advantage can be very easilly explained through example: Single core processors have a single thread, and can process a single set of instructions per clock cycle. This looks like this (Saying this processor can process 2 instructions a clock): (Note this is in an optimal setting where data is perfectly threaded) Clock 1: Instruction 1; Instruction 2; Clock 2: Instruction 3; Instruction 4; Clock 3: Instruction 5; Instruction 6; Clock 4: Instruction 7; Instruction 8; Dual-Core processing would do this same instruction set much quicker: Clock 1: Instruction 1; Instruction 2; Instruction 3; Instruction 4 Clock 2: Instruction 5; Instruction 6; Instruction 7; Instruction 8 In a perfectly threaded application, two equivilent-performance cores on a dual core processor would power through the work twice as quickly as a single-core model. A quad-core with these specs would do the entire instruction set in a single clock. Even if it isn't always a 2x increase, multiple-core procesors have a distinct advantage in a very large range of applications.


What advantages do dual core and quad core processors have over single core processors?

The most gaping advantage can be very easilly explained through example: Single core processors have a single thread, and can process a single set of instructions per clock cycle. This looks like this (Saying this processor can process 2 instructions a clock): (Note this is in an optimal setting where data is perfectly threaded) Clock 1: Instruction 1; Instruction 2; Clock 2: Instruction 3; Instruction 4; Clock 3: Instruction 5; Instruction 6; Clock 4: Instruction 7; Instruction 8; Dual-Core processing would do this same instruction set much quicker: Clock 1: Instruction 1; Instruction 2; Instruction 3; Instruction 4 Clock 2: Instruction 5; Instruction 6; Instruction 7; Instruction 8 In a perfectly threaded application, two equivilent-performance cores on a dual core processor would power through the work twice as quickly as a single-core model. A quad-core with these specs would do the entire instruction set in a single clock. Even if it isn't always a 2x increase, multiple-core procesors have a distinct advantage in a very large range of applications.


What advantage do dual-core and quad-core processors have over single core processors?

The most gaping advantage can be very easilly explained through example: Single core processors have a single thread, and can process a single set of instructions per clock cycle. This looks like this (Saying this processor can process 2 instructions a clock): (Note this is in an optimal setting where data is perfectly threaded) Clock 1: Instruction 1; Instruction 2; Clock 2: Instruction 3; Instruction 4; Clock 3: Instruction 5; Instruction 6; Clock 4: Instruction 7; Instruction 8; Dual-Core processing would do this same instruction set much quicker: Clock 1: Instruction 1; Instruction 2; Instruction 3; Instruction 4 Clock 2: Instruction 5; Instruction 6; Instruction 7; Instruction 8 In a perfectly threaded application, two equivilent-performance cores on a dual core processor would power through the work twice as quickly as a single-core model. A quad-core with these specs would do the entire instruction set in a single clock. Even if it isn't always a 2x increase, multiple-core procesors have a distinct advantage in a very large range of applications.