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PDF Editor FAQ

Are there other ways to hang a large flat canvas besides stretching it onto wooden bars?

You could hang it the way art quilts are hung - they are clipped on the top edge of the quilt with the equivalent of heavy duty binder clips, which are then suspended from a wood pole or wood bar or the like, which is wider than the quilt. The bar is hung from the wall with picture type hangers. All components must be heavy duty enough to support the weight of the entire unit, this is important or it will fail eventually.

What are the analog and digital quantities with names? What are some examples from our daily life?

Briefly, the analog electric quantities and digital electric quantities are not technically different. But in practical terms, the differences occur systematically.Analog system electric supply can be quantified most practically by using Ohms, Voltage, Amperes, and Watts covered under topics of Ohm’s law and Joule’s law. Digital systems of course utilize the same quantities. However, on systematic terms, voltage delivery occurs in highly-regulated manner. Ultimately, the quantities of digital systems express in term of pulses and waves and the analog quantities entail matching and compatibility issues moreso than component values, because digital systems design does not offer as much leeway for circuit modification as fact of their comparative complexity. Generally any modification to a digital system has to be supported in advance by its design.Analog Electric SystemsPotential, current, resistance, and power make up basic analog quantities. These are not the only analog quantities but rather the most basic. Other analog quantities relate to these; impedance resembles resistance but applies to AC circuits. And reluctance resembles resistance but applies to magnetic circuits.Each analog quantity has its own unit of measurement.Potential electricity measures in volts and describes electric supply to any portion of a circuit or component. This electrical potential in the real world can be compared to a difference of activity between two poles, one stuck in earth and one stuck in boiling water. Connecting the poles provides for pressure of electrons to distribute along a common conductor. The same can be done using two steel nails, a lemon, and copper connecting wire.Current measures in amperes and describes electron activity. There will be more electron activity at increased temperatures, although go too high in activity level and your connectors will burn out, rendering the circuit inoperable. A real world example would be the difference between a wooden pole and a lightening rod: the lightening rod can accumulate current far greater in quantity and far faster than the wood pole — and survive in product life to tell the tale.Resistance measures in Ohms and describes how well a specific structure can handle strain, specifically from applied voltage. When current was mentioned in the pole analogy, the wood pole was presumed to had caught fire and disintegrated into ash long before the lightening rod ever got around to melting under some infinitely-incremented voltage. That fact means that the wood pole has a lower resistive constant and would require a very limited voltage in order to be used in a circuit. If you think I'm kidding, a wood pole consists of carbon every bit as real as a pencil of graphite. Graphite can actually be used as an electric conductor in a circuit as simply as creating the pencil mark in saturated form and using it like copper wire to supply voltage to.Finally, power measures in Watts and entails quanta acting together rather than acting apart. Power certainly concerns how much voltage & current, together, that any given component can handle. And analog components as well as digital components will each be rated as to how much power; or voltage apart from current; it can handle. In real world, a kid holds a slingshot. Power equals force applied to deliver pebble to some practical object such as a taut paper target not so much unlike one used typically at target ranges with archery quarrels or bullets. Mathematically, it would be foot-pounds converted to watts.Digital Electric SystemsDigital systems operate on pulses controlled systemically entirely by clocks and events, which of course entail DC power supply and analog quantities.Although the digital system ultimately becomes predicated by arrangement of voltage supplies that entail DC quantities, focus on digital operation remains a matter of operational characteristics specific to the system, in this case the digital system and its circuits.Pulses of the digital system or digital circuit vary as matter of waveform characteristics. Specific quantifies involved relate to wave shaping outputs and the wave itself or, sinusoidal quantities versus non-sinusoidal quantities.Either form of wave occurs with common characteristics of amplitude, DC-level, time constant factors of repetition rate & pulse-width for recurring pulse, and amplitudinal factors of rise & fall of a pulse. These digital quantities each exist quite validly in electronics and relate to electrical conduct of digital pulses.However, the essence involved in digital pulse quantities reduce to voltage levels and current. Real-world equivalency would be like throwing the same stone into the same pond and always ending up with the same ripple characteristics. But maybe you throw the same rod in the same pool and end up with wide riplets instead of round ones. The point being made concerns identical uniformity of the pulse, that it must be produced with exquisitely reliable system performance. Though there may be many types of pulses involved in any given digital system, it only operates as intended when the pulses repeat within identical parameters of form and characteristics thereof. You can produce a square wave of various sizes, but the digital pulse square wave must always be the same for its specific role in the digital circuit.Digital electronics concerns delivery of power to microchip ports. The power itself consists only of two pulses, which always occur in binary complement, as their voltage occurs at consistent levels, one voltage level always consistent with an ON pulse and another voltage level always consistent with an OFF pulse. The pulses themselves fit binary schema of microchips.A simple four-bit microchip can be isolated with four specific pulses to reference a single memory address and supplied with a single pulse to send an instruction to the chip at that address, where the command will either turn the bit at that address ON or OFF. In the real world, if she wants apples, he needs an apple tree at the address she sends him to. If the tree has no apples, she has to turn on the function. This may require him waiting at the tree for six months (clock function) until apples appear at tree-node, which entails that the zero bit shifts by clock to an ON or one-bit. When he gets the apples to transport back to her address, the bit goes OFF. It may work the opposite way if the hardware designer had preferred, but a digital systemic can entail just such a parameter of function.In the real world, some systems really do have the capacity to wait six months to trigger a function.At this point, digital quantities should be distinct from digital dynamics. Quantities describe parameters pertinent to role of digital pulse, while dynamics explain role of pulse in how it accomplishes its purpose for any given function.I hope that my license taken with attributing these “quantities" of mention that apply to digital signal helps better to explain the systematic nature of digital electronics in sharp contrast to basic analog electronics and commutative quantities in-common between analog and digital circuits, or systems, that for digital electronics preface routine function.References:· More about slingshotsTake Your Best Shot: Prepper’s Slingshot Roundup | RECOIL OFFGRID

Why does the power go out or the supply is cut off during storms and lightning? What damage can occur if lightning strikes a power pole?

Power often goes out in a storm fromwires which are uninsulated between poles slapping together in the wind shorting out and blowing circuit breakersPoles falling down and transmission lines breaking. This can be from high winds or it can be from flying or falling wind driven itemsExcessive use, for example high electrical demands from winter storms. if capacity is exceeded, loads are shed or the generators will stop themselves from damageloss of generators in the storm; flooding, freezing, wind damage, etc.other storm effects such as lightning-strike surges which can blow out substations, transformers, melt wires, and topple poles.Lightning striking objects can literally cause them to explode by superheating any moisture in them like trees and wood poles. They will split, crack and fall. Falling trees or poles will break the wires and interrupt power. Also surges can damage substation components, wires, transformers or enter your home and damage wiring and appliances.

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