sloth hacking
First of all, rattlesnakes do not ignore animals. They hunt them for food. Secondly, Rattlesnakes, like all animals, have a sense of sight. They can tell the difference between a plant, which they don't eat, and an animal, which they do.
uniprocessor : - A type of architecture that is based on a single computing unit. All operations ( additions, multiplications, etc ) are done sequentally on the unit. . multiprocessor : - A type of architecture that is based on multiple computing units. Some of the operations ( not all, mind you ) are done in parallel and the results are joined afterwards.
difference between that's it and that's all
no difference at all.
Parallel computing involves breaking down a task into smaller parts that are executed simultaneously on multiple processors within the same system. Distributed computing, on the other hand, involves dividing a task among multiple independent computers connected through a network. The key difference lies in how the tasks are divided and executed. In parallel computing, all processors have access to shared memory, allowing for faster communication and coordination. In distributed computing, communication between computers is slower due to network latency. This difference impacts performance and scalability. Parallel computing can achieve higher performance for tasks that can be divided efficiently among processors, but it may face limitations in scalability due to the finite number of processors available. Distributed computing, on the other hand, can scale to a larger number of computers, but may face challenges in coordinating tasks and managing communication overhead.
All buildings are structures but not all structures are buildings
There is no difference at all.
First, let's look at what they mean. Ubiquitous means everywhere. Pervasive means "diffused throughout every part of." In computing terms, those seem like somewhat similar concepts. Ubiquitous computing would be everywhere, and pervasive computing would be in all parts of your life. That might mean the difference between seeing kiosks on every street corner and finding that you could -- or need to -- use your Palm handheld to do absolutely every information-based task. And, in fact, that's where the difference between these two types of computing lies. Pervasive computing involves devices like handhelds -- small, easy-to-use devices -- through which we'll be able to get information on anything and everything. That's the sort of thing that Web-enabled cell phones promise. Ubiquitous computing, though, eschews our having to use computers at all. Instead, it's computing in the background, with technology embedded in the things we already use. That might be a car navigation system that, by accessing satellite pictures, alerts us to a traffic jam ahead, or an oven that shuts off when our food is cooked. Where IBM is a leader in the pervasive computing universe -- it has a whole division, aptly called the Pervasive Computing division, devoted to it -- Xerox started the ubiquitous thing back in 1988. Ubiquitous computing "helped kick off the recent boom in mobile computing research," notes its inventor, Mark Weiser, who came out with the concept at Xerox's Palo Alto Research Center, "although it is not the same thing as mobile computing, nor a superset nor a subset." That means that people who use ubiquitous computing to mean computing anytime, anyplace -- to describe hordes on a street corner checking their stock prices until the "walk" light comes on or efforts to dole out laptops to all students on a college campus -- aren't using the rightterm. We don't really need to use either one. I'd be happy to call pervasive computing mobile computing, and to call ubiquitous computing embedded or invisible or transparent computing -- or even just built-in functions. Besides, until either ubiquitous or pervasive computing is anywhere and everywhere, those alternatives seem more accurate.
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It's a difference in dialect, is all.
no difference at all.
there both gay there is no difference at all