Lasko 18″ Stand 3-Speed Fan with Cyclone Grill, Model S18902, Gray
Stay cool with this Lasko 18″ Stand 3-Speed Fan with Cyclone Grill. It is ideal for hot weather use in any area where you need air circulation. Its 18″ blades is effective in cooling large spaces, and the cyclone grill provides superior performance and broader air flow compared to regular fans. The Lasko Stand Fan provides quiet cooling and it has three energy-efficient speeds. It also tilts and adjusts up to 54.5″ in height so you can easily direct the air where needed. This fan features the Blue Plug, a patented safety fuse technology. The widespread oscillation helps to maximize the cooling area. Made for ultimate out-of-the-box convenience, this item is easy to assemble without the need for clips or tools. This Pedestal Fan is ideal for homes, schools, libraries, hospitals, meeting rooms and any other space where people work or spend periods of time. The portable design is also easy to move around. Lasko 18″ Stand Fan with Cyclone Grill is great cooling fan for large living areas where there is ample floor space. Lasko has been engineering and building great-looking, high performance home comfort products in the U.S. and around the world for more than 100 years. The company has grown to an international organization and market leader in portable fans and ceramic heaters including room fans, high velocity fans, ceramic, low-profile heaters and many more.
Lasko 18″ Stand 3-Speed Fan with Cyclone Grill, Model S18902, Gray:Quietly cools large spaces3 energy-efficient speedsPedestal fan easily tilts to direct air where neededAdjusts up to 54.5″ in heightWidespread oscillationSimple, no tools assembly for out-of-the-box convenienceConstruction: plastic1 year limited warrantyIdeal for homes, schools, libraries, hospitals, meeting rooms and any space where many people work or spend periods of timePortable, move it from room to room easilyETL listedCord length: 76 inchesFinish: gray
Eighteen or 18 may refer to:
- 18 (number)
- One of the years 18 BC, AD 18, 1918, 2018
3 (three) is a number, numeral and digit. It is the natural number following 2 and preceding 4, and is the smallest odd prime number and the only prime preceding a square number. It has religious and cultural significance in many societies.
In meteorology, a cyclone () is a large air mass that rotates around a strong center of low atmospheric pressure, counterclockwise in the Northern Hemisphere and clockwise in the Southern Hemisphere as viewed from above (opposite to an anticyclone). Cyclones are characterized by inward-spiraling winds that rotate about a zone of low pressure. The largest low-pressure systems are polar vortices and extratropical cyclones of the largest scale (the synoptic scale). Warm-core cyclones such as tropical cyclones and subtropical cyclones also lie within the synoptic scale. Mesocyclones, tornadoes, and dust devils lie within the smaller mesoscale.
Upper level cyclones can exist without the presence of a surface low, and can pinch off from the base of the tropical upper tropospheric trough during the summer months in the Northern Hemisphere. Cyclones have also been seen on extraterrestrial planets, such as Mars, Jupiter, and Neptune. Cyclogenesis is the process of cyclone formation and intensification. Extratropical cyclones begin as waves in large regions of enhanced mid-latitude temperature contrasts called baroclinic zones. These zones contract and form weather fronts as the cyclonic circulation closes and intensifies. Later in their life cycle, extratropical cyclones occlude as cold air masses undercut the warmer air and become cold core systems. A cyclone's track is guided over the course of its 2 to 6 day life cycle by the steering flow of the subtropical jet stream.
Weather fronts mark the boundary between two masses of air of different temperature, humidity, and densities, and are associated with the most prominent meteorological phenomena. Strong cold fronts typically feature narrow bands of thunderstorms and severe weather, and may on occasion be preceded by squall lines or dry lines. Such fronts form west of the circulation center and generally move from west to east; warm fronts form east of the cyclone center and are usually preceded by stratiform precipitation and fog. Warm fronts move poleward ahead of the cyclone path. Occluded fronts form late in the cyclone life cycle near the center of the cyclone and often wrap around the storm center.
Tropical cyclogenesis describes the process of development of tropical cyclones. Tropical cyclones form due to latent heat driven by significant thunderstorm activity, and are warm core. Cyclones can transition between extratropical, subtropical, and tropical phases. Mesocyclones form as warm core cyclones over land, and can lead to tornado formation. Waterspouts can also form from mesocyclones, but more often develop from environments of high instability and low vertical wind shear. In the Atlantic and the northeastern Pacific oceans, a tropical cyclone is generally referred to as a hurricane (from the name of the ancient Central American deity of wind, Huracan), in the Indian and south Pacific oceans it is called a cyclone, and in the northwestern Pacific it is called a typhoon. The growth of instability in the vortices is not universal. For example, the size, intensity, moist-convection, surface evaporation, the value of potential temperature at each potential height can affect the nonlinear evolution of a vortex.
Fan commonly refers to:
- Fan (machine), a machine for producing airflow, often used for cooling
- Hand fan, an implement held and waved by hand to move air for cooling
- Fan (person), short for fanatic; an enthusiast or supporter, especially with regard to entertainment
Fan, FAN or fans may also refer to:
A model is an informative representation of an object, person, or system. The term originally denoted the plans of a building in late 16th-century English, and derived via French and Italian ultimately from Latin modulus, a measure.
Models can be divided into physical models (e.g. a ship model or a fashion model) and abstract models (e.g. a set of mathematical equations describing the workings of the atmosphere for the purpose of weather forecasting). Abstract or conceptual models are central to philosophy of science.
In scholarly research and applied science, a model should not be confused with a theory: while a model seeks only to represent reality with the purpose of better understanding or predicting the world, a theory is more ambitious in that it claims to be an explanation of reality.
In kinematics, the speed (commonly referred to as v) of an object is the magnitude of the change of its position over time or the magnitude of the change of its position per unit of time; it is thus a non-negative scalar quantity. The average speed of an object in an interval of time is the distance travelled by the object divided by the duration of the interval; the instantaneous speed is the limit of the average speed as the duration of the time interval approaches zero. Speed is the magnitude of velocity (a vector), which indicates additionally the direction of motion.
Speed has the dimensions of distance divided by time. The SI unit of speed is the metre per second (m/s), but the most common unit of speed in everyday usage is the kilometre per hour (km/h) or, in the US and the UK, miles per hour (mph). For air and marine travel, the knot is commonly used.
The fastest possible speed at which energy or information can travel, according to special relativity, is the speed of light in vacuum c = 299792458 metres per second (approximately 1079000000 km/h or 671000000 mph). Matter cannot quite reach the speed of light, as this would require an infinite amount of energy. In relativity physics, the concept of rapidity replaces the classical idea of speed.
With or WITH may refer to:
- With, a preposition in English
- Carl Johannes With (1877–1923), Danish doctor and arachnologist
- With (character), a character in D. N. Angel
- With (novel), a novel by Donald Harrington
- With (album), a 2014 album by TVXQ
- With (EP), a 2021 EP by Nam Woo-hyun
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