Saki Ninomiya : This Is An Un Official Fan Site Tribute
Saki Ninomiya
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Saki Ninomiya

Movie Title Year Distributor Notes Rev Formats 1000 Face Shower 2012 Moodyz 8 Creampies and 38 Pee Drinks 2013 Moodyz Creampie All Of Saki Ninomiya 2013 Momotoro Japan Anal Sex Debut (II) 2014 Rookie Anal Beautiful Girl x Squirting First Pee: Saki Ninomiya 2012 Moodyz Squirt Pee Come To My House 2012 IdeaPocket Delivery Saki 2013 Moodyz Dream Woman 89: Saki Ninomiya 2012 Moodyz Facial Endless Blowjob and Sex 2012 IdeaPocket Endless Orgasm: Saki Ninomiya 2012 Moodyz D Erotic Managers 2014 Madonna Extensive Impregnation 2012 M's Video Group Creampie Men's Esthetic Salon 2012 IdeaPocket Ordinal Lifestyle of the Female Announcer 2014 Attackers Panty-Less Female Teacher Temptations: Saki Ninomiya 2011 Premium Facial Squirt Panty-Less Schoolgirl: Saki Ninomiya 2008 Premium Facial Squirt Swallow Panty-Less Schoolgirl: Saki Ninomiya 2 2010 Premium Facial Pee Drink Debut 2012 M's Video Group Premium Beauty 2011 Premium Private Tutor is a College Girl: Saki Ninomiya 2009 Premium Raped in Front of Husband 2014 Attackers Saki's Oral Sex 2012 IdeaPocket Story of Japanese Archery 2012 IdeaPocket Teacher and Me 2013 Moodyz
Torque wrench Orientation in three-dimensional space See also the section about navigation below. Level Dumpy level Laser line level Spirit level Direction Gyroscope Energy carried by mechanical quantities, mechanical work Ballistic pendulum, indirectly by calculation and or gauging Electricity, electronics and electrical engineering See also: Electrical measurements Considerations related to electric charge dominate electricity and electronics. Electrical charges interact via a field. That field is called electric field.If the charge doesn't move. If the charge moves, thus realizing an electric current, especially in an electrically neutral conductor, that field is called magnetic. Electricity can be given a quality — a potential. And electricity has a substance-like property, the electric charge. Energy (or power) in elementary electrodynamics is calculated by multiplying the potential by the amount of charge (or current) found at that potential: potential times charge (or current). (See Classical electromagnetism and its Covariant formulation of classical electromagnetism) An instrument for detecting net charges, the electroscope. Electric charge Electrometer is often used to reconfirm the phenomenon of contact electricity leading to triboelectric sequences. Torsion balance used by Coulomb to establish a relation between charges and force, see above. For the ranges of charge values see: Orders of magnitude (charge)



Electric current (current of charge) Ammeter Clamp meter Galvanometer D'Arsonval galvanometer Voltage (electric potential difference) Oscilloscope allows quantifying time-dependent voltages Voltmeter Electric resistance, electrical conductance (and electrical conductivity) Ohmmeter Time-domain reflectometer characterizes and locates faults in metallic cables by runtime measurements of electric signals. Wheatstone bridge Electric capacitance Capacitance meter Electric inductance Inductance meter Energy carried by electricity or electric energy Electric energy meter Electricity meter Power carried by electricity (current of energy) Wattmeter Electric field (negative gradient of electric potential, voltage per length) Field mill Magnetic field See also the relevant section in the article about the magnetic field. Compass Hall effect sensor Magnetometer Proton magnetometer SQUID For the ranges of magnetic field see: Orders of magnitude (magnetic field) Combination instruments Multimeter, combines the functions of ammeter, voltmeter and ohmmeter as a minimum. LCR meter, combines the functions of ohmmeter, capacitance meter and inductance meter. Also called component bridge due to the bridge circuit method of measurement. Thermodynamics Temperature-related considerations dominate thermodynamics. There are two distinct thermal properties: A thermal potential — the temperature. For example: A glowing coal has a different thermal quality than a non-glowing one. And a substance-like property, — the entropy; for example: One glowing coal won't heat a pot of water, but a hundred will. Energy in thermodynamics is calculated by multipying the thermal potential by the amount of entropy found at that potential: temperature times entropy. Entropy can be created by friction but not annihilated. Amount of substance (or mole number) A physical quantity introduced in chemistry; usually determined indirectly. If mass and substance type of the sample are known, then atomic- or molecular masses (taken from a periodic table, masses measured by mass spectrometry) give direct access to the value of the amount of substance. See also the article about molar masses. If specific molar values are given, then the amount of substance of a given sample may be determined by measuring volume, mass or concentration. See also the subsection below about the measurement of the boiling point. Gas collecting tube gases Temperature Electromagnetic spectroscopy Galileo thermometer Gas thermometer principle: relation between temperature and volume or pressure of a gas (Gas laws). constant pressure gas thermometer constant volume gas thermometer Liquid crystal thermometer liquid thermometer principle: relation between temperature and volume of a liquid (Coefficient of thermal expansion). Alcohol thermometer Mercury-in-glass thermometer Pyranometer principle: solar radiation flux density relates to surface temperature (Stefan–Boltzmann law) Pyrometers principle: temperature dependence of spectral intensity of light (Planck's law), i.e. the color of the light relates to the temperature of its source, range: from about -50 °C to +4000 °C, note: measurement of thermal radiation (instead of thermal conduction, or thermal convection) means: no physical contact becomes necessary in temperature measurement (pyrometry). Also note: thermal space resolution (images) found in Thermography. Resistance thermometer principle: relation between temperature and electrical resistance of metals (platinum) (Electrical resistance), range: 10 to 1,000 kelvins, application in physics and industry solid thermometer principle: relation between temperature and length of a solid (Coefficient of thermal expansion). Bi-metallic strip Thermistors principle: relation between temperature and electrical resistance of ceramics or polymers, range: from about 0.01 to 2,000 kelvins (-273.14 to 1,700 °C) Thermocouples principle: relation between temperature and voltage of metal junctions (Seebeck effect), range: from about -200 °C to +1350 °C Thermometer Thermopile is a set of connected thermocouples Triple Point cell used for calibrating thermometers. Imaging technology Thermographic camera uses a microbolometer for detection of heat-radiation. See also Temperature measurement and Category:Thermometers. More technically related may be seen thermal analysis methods in materials science. For the ranges of temperature-values see: Orders of magnitude (temperature) Energy carried by entropy or thermal energy An active calorimeter lacking a temperature measurement device. This includes thermal capacitance or temperature coefficient of energy, reaction energy, heat flow ... Calorimeters are called passive if gauged to measure emerging energy carried by entropy, for example from chemical reactions. Calorimeters are called active or heated if they heat the sample, or reformulated: if they are gauged to fill the sample with a defined amount of entropy. Actinometer measures the heating power of radiation. constant-temperature calorimeter, phase change calorimeter for example an ice calorimeter or any other calorimeter observing a phase change or using a gauged phase change for heat measurement. constant-volume calorimeter, also called bomb calorimeter constant-pressure calorimeter, enthalpy-meter or coffee cup calorimeter Differential Scanning Calorimeter Reaction calorimeter see also Calorimeter or Calorimetry Entropy Entropy is accessible indirectly by measurement of energy and temperature. Entropy transfer Phase change calorimeter's energy value divided by absolute temperature give the entropy exchanged. Phase changes produce no entropy and therefore offer themselves as an entropy measurement concept. Thus entropy values occur indirectly by processing energy measurements at defined temperatures, without producing entropy. constant-temperature calorimeter, phase change calorimeter Heat flux sensor uses thermopiles which are connected thermocouples to determine current density or flux of entropy. Entropy content The given sample is cooled down to (almost) absolute zero (for example by submerging the sample in liquid helium). At absolute zero temperature any sample is assumed to contain no entropy (see Third law of thermodynamics for further information). Then the following two active calorimeter types can be used to fill the sample with entropy until the desired temperature has been reached: (see also Thermodynamic databases for pure substances) constant-pressure calorimeter, enthalpy-meter, active constant-temperature calorimeter, phase change calorimeter, active Entropy production Processes transferring energy from a non-thermal carrier to heat as a carrier do produce entropy (Example: mechanical/electrical friction, established by Count Rumford). Either the produced entropy or heat are measured (calorimetry) or the transferred energy of the non-thermal carrier may be measured. calorimeter (any device for measuring the work which will or would eventually be converted to heat and the ambient temperature) Entropy lowering its temperature—without losing energy—produces entropy (Example: Heat conduction in an isolated rod; "thermal friction"). calorimeter temperature coefficient of energy or "heat capacity" Concerning a given sample, a proportionality factor relating temperature change and energy carried by heat. If the sample is a gas, then this coefficient depends significantly on being measured at constant volume or at constant pressure. (The terminiology preference in the heading indicates that the classical use of heat bars it from having substance-like properties.) constant-volume calorimeter, bomb calorimeter constant-pressure calorimeter, enthalpy-meter specific temperature coefficient of energy or "specific heat" The temperature coefficient of energy divided by a substance-like quantity (amount of substance, mass, volume) describing the sample. Usually calculated from measurements by a division or could be measured directly using a unit amount of that sample. For the ranges of specific heat capacities see: Orders of magnitude (specific heat capacity) Coefficient of thermal expansion Dilatometer Strain gauge Melting temperature (of a solid) Thiele tube Kofler bench Differential Scanning Calorimeter gives melting point and enthalpy of fusion. Boiling temperature (of a liquid) Ebullioscope a device for measuring the boiling point of a liquid. This device is also part of a method that uses the effect of boiling point elevation for calculating the molecular mass of a solvent. See also thermal analysis, Heat. More on continuum mechanics This includes mostly instruments which measure macroscopic properties of matter: In the fields of solid state physics; in condensed matter physics which considers solids, liquids and in-betweens exhibiting for example viscoelastic behavior. Furthermore, fluid mechanics, where liquids, gases, plasmas and in-betweens like supercritical fluids are studied. Density This refers to particle density of fluids and compact(ed) solids like crystals, in contrast to bulk density of grainy or porous solids. Aerometer liquids Dasymeter gases Gas collecting tube gases Hydrometer liquids Pycnometer liquids Resonant frequency and Damping Analyser (RFDA) solids For the ranges of density-values see: Orders of magnitude (density) Hardness of a solid Durometer Shape and surface of a solid Holographic interferometer Laser produced speckle pattern analysed. Resonant frequency and Damping Analyser (RFDA) Tribometer Deformation of condensed matter Strain gauge all below Elasticity of a solid (elastic moduli) resonant frequency and Damping Analyser (RFDA), using the impulse excitation technique: A small mechanical impulse causes the sample to vibrate. The vibration depends on elastic properties, density, geometry and inner structures (lattice or fissures). Plasticity of a solid Cam plastometer Plastometer Measurement results (a) brittle (b) ductile with breaking point (c) ductile without breaking point. Tensile strength, ductility or malleability of a solid Universal Testing Machine Granularity of a solid or of a suspension Grindometer Viscosity of a fluid Rheometer Viscometer Optical activity Polarimeter


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