Check your BMI

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What does your number mean?

Body Mass Index (BMI) is a simple index of weight-for-height that is commonly used to classify underweight, overweight and obesity in adults.

BMI values are age-independent and the same for both sexes.
The health risks associated with increasing BMI are continuous and the interpretation of BMI gradings in relation to risk may differ for different populations.

As of today if your BMI is at least 35 to 39.9 and you have an associated medical condition such as diabetes, sleep apnea or high blood pressure or if your BMI is 40 or greater, you may qualify for a bariatric operation.

If you have any questions, contact Dr. Claros.

< 18.5 Underweight
18.5 – 24.9 Normal Weight
25 – 29.9 Overweight
30 – 34.9 Class I Obesity
35 – 39.9 Class II Obesity
≥ 40 Class III Obesity (Morbid)

What does your number mean?

Body Mass Index (BMI) is a simple index of weight-for-height that is commonly used to classify underweight, overweight and obesity in adults.

BMI values are age-independent and the same for both sexes.
The health risks associated with increasing BMI are continuous and the interpretation of BMI gradings in relation to risk may differ for different populations.

As of today if your BMI is at least 35 to 39.9 and you have an associated medical condition such as diabetes, sleep apnea or high blood pressure or if your BMI is 40 or greater, you may qualify for a bariatric operation.

If you have any questions, contact Dr. Claros.

< 18.5 Underweight
18.5 – 24.9 Normal Weight
25 – 29.9 Overweight
30 – 34.9 Class I Obesity
35 – 39.9 Class II Obesity
≥ 40 Class III Obesity (Morbid)

coefficient of thermal expansion amalgam vs composite

Billets produced by vacuum-impregnating layers of two types of fiberglass cloth with an epoxy were core-drilled to produce cylindrical specimens. Knowing the initial area A 0 [m 2] of a given solid (e.g. 4.53 It has been reported that in Cu the thermal expan- sion coefficient of the grain boundaries is about 2.5-5.0 times the thermal expansion coefficient of the lattice … It was an amalgamation, or blending of, silver, mercury and other metals. Imagine a sheet of metal with a defined area. An expedient solution to formulating composite stiffened panel stiffness terms and thermal expansion and bending coefficients must be founded on an effective balance be Distribution Statement No … J DentRes58(2):584-587, February 1979 Introduction. 2.) The U.S. Department of Energy's Office of Scientific and Technical Information @article{osti_7045917, title = {Thermal expansion of epoxy-fiberglass composite specimens}, author = {McElroy, D L and Weaver, F J and Bridgman, C}, abstractNote = {The thermal expansion behavior of three epoxy-fiberglass composite specimens was measured from 20 to 120/sup 0/C (70 to 250/sup … As with any building product, there is a certain “coefficient of linear expansion”, meaning that as temperature changes, the material will shrink (when it cools) or expand (when it warms up). Coefficient of linear thermal expansion is designated by the symbol α (alpha). Thermal expansion also applies to surfaces. thermal expansion, and thermal bending formulations. Composite 1# has the Objective: Compare the two most commonly used restorative materials Head to head. The thermal coefficient values of the various mixtures ranged between 2.046 and 6.321 x 10-5/ C (1.137 and 3.512 x 10-5/ F). 1. metal sheet), the temperature difference ΔT [ºC] and the coefficient of linear expansion of the solid α [1/ºC], the change in area ΔA [m 2] of the solid can be calculated as: 2. Six restorative materials with varying coefficients of thermal expansion were thermocycled in basic fuschin dye and compared for [1] Temperature is a monotonic function of the average molecular kinetic energy of a substance. coefficient of thermal expansion of wood - wood plastic composite deck,wood and…While wood has always been a traditional material when it comes to porches, patios and decks, composite decking is a modern counterpart that Thermal expansion is the tendency of matter to change its shape, area, volume, and density in response to a change in temperature, usually not including phase transitions. 1 Some of the main factors are that amalgam restorations do not adhere to the cavity wall chemically, and there are critical differences in the coefficient of thermal expansion of amalgam and tooth structure. If heated, the same sheet of metal will have a slightly bigger area. The use of composite resin material has increased and has become the first choice for most carious lesions. Linear thermal expansion coefficient is defined as material's fractional change in length divided by the change in temperature. : Thermal Expansion of Composite Laminates 29 properties of the composite laminate are altered along Y-direction due to the resulted staking sequence [20/-20/20/-20/ 20/-20] S. Fig. Coefficient of thermal expansion (CTE) study in metal matrix composite of CuSiC vs AlSiC To cite this article: Mohd N Arif et al 2019 IOP Conf. Sci. Ser. The facts on fillings: Amalgam vs. resin composite You and your dentist have two choices when it comes to fillings: amalgam (a mixture of metals) and resin composite (ceramic and plastic compound). : Mater. Coefficient of Moisture Expansion Capabilities Relative Humidity (RH) 0 % RH to 95 % RH Temperature Range 296 K to 348 K (23 C to 75 C) Sample Sizes Flexible geometry requirements Other Measurements Axial and transverse Amalgam vs composites 1. OIC for the composite and from 70.9 to 93.7 x 10-0/ Cfor thesealants. In a typical “rout and return” system panels are v-grooved and folded to make “returns” around the perimeter and Panel Extrusions are fastened to these returns. 4.COEFFICIENT OF THERMAL EXPANSION Linear coefficient of thermal expansion of composite ranges between 25-30 x 10-6 / and 55-68 x 10-6 / Large differences between CTE of tooth and composite causes expansion 4. Values of the plies A three‐dimensional theoretical model is established to predict the coefficients of thermal expansion for unidirectional fiber‐reinforced composites. Bounds on effective thermal expansion coefficients of isotropic and anisotropic composite materials consisting of isotropic phases are derived by employing extremum principles of thermoelasticity. Observing that the thermal expansional strain of a specimen of length L due to a rise of temperature ΔT is given by e = LαΔT, the longitudinal thermal expansion coefficient α' 11 of a unidirectional composite is derived from Eq. Problems still exist with polymerization contraction stress, large differences in the coefficient of thermal expansion Keywords: composite, coefficient of thermal expansion, transverse, regression 1706 Dong, A regression-based model fo r the transverse coefficient of thermal expansion of composites 1. By Dr. RASHID HASSAN BDS(de’ Mont) MSc (QMUL.UK) Hod Science of Dental Materials 2. The coefficients of thermalexpansion of asphalt mixtures were slightly larger than contraction. … The negative expansion effect is the most obvious in the range 0-100C, but above 0-100C, their CTE variation with temperature is approximately linear and the slope of CTE vs. T curves is the same roughly. Although composites have not totally replaced amalgam, they have become a viable substitute in many situations. This study examines the relationship between thermal coefficient of expansion and microleakage. Coefficient of Thermal Expansion, Concrete, Aggregate, Bond Strength, Thermal Expansion, Mineral, Dilatometer, Aggregate Gradation 18. Amalgam vs. Composite: At the end of the 19th century, a famous dentist, J.V. Each type of filling has advantages and drawbacks. Another called "Thermal expansion characteristics of PEEK composites" has good evidence that it happens in real life: http: //www.spri ngerlink.c om/content /lnx431743 6781u35/fu lltext.pdf (See fig. The thermal expansion behavior of three epoxy-fiberglass composite specimens was measured from 20 to 120°C (70 to 250°F) using a fused quartz push-rod dilatometer. Thermal Expansion / 11 Table 2.1 Summary of Thermal Expansion Coefficient of Linear Thermal Expansion (CTE), Approximate Ranges at Room Temperature to 100 C (212 F), from Lowest to Highest CTE Value CTE 10-6/K 10-6/ F Material 13, the laminates seems to have about -2 microstrain/K between +-20° and +-30°; the AS4 fibres at 20°C have a longitudinal CTE of about +0.2 microstrain/K from fig. The SI unit of-1 -1. Inequalities between certain This paper gives data on the linear thermal expansion of titanium (97.2 percent) at various temperatures between -190 and + 700 C. The coefficient of expan sion of titanium increases from about 5 X 10-6/ Cat … These were used to study expansion perpendicular and parallel to the … This change can be attributed to several factors. Black , formulated the familiar silver filling material that has become so common today. Velea, M.N., et al. Will be discussing the two giants of operative dentistry under same heading to have a thorough understanding & comparison. This effect was expected, since amalgam has a higher linear coefficient of thermal expansion than the tooth structure, is a good thermal conductor and thermal diffuser 3, and the extreme temperatures produced by thermal Values of the linear thermal coefficient of expansion (a) of composite restorative materials have beenand The coefficient of thermal expansion of specimens from 60 freshly extracted human teeth were measured over the range 10–80 C using a dilatometer. Thermal expansion properties of composite materials Thermal expansion data for several composite materials, including generic epoxy resins, various graphite, boron, and glass fibers, and unidirectional and woven fabric composites in an epoxy matrix, were compiled. Abstract Various analytical models of the effective thermal expansion coefficients of unidirectional fibre-reinforced composite materials predict for certain fibre-matrix combinations an increase in the transverse coefficient of thermal expansion over that of its constituents at low fibre volume content. Coefficient of thermal expansion (CTE) study in metal matrix composite of CuSiC vs AlSiC Mohd N Arif 1, Mohabattul Z Bukhari 1, Dermot Brabazon 2 and M Saleem J Hashmi 2 Published under licence by IOP Publishing Ltd TR-18 (100-71-2 ) Rev.F / 6/25/2004 Page 5 of 5 Coefficient of Thermal Expansion for Various Materials at Different Temperatures else, in whole or in part, without the prior written authorization of an officer of Bal Seal Engineering Of a given solid ( e.g predict the coefficients of thermal expansion for unidirectional fiber‐reinforced composites of thermalexpansion asphalt! A famous dentist, J.V produced by vacuum-impregnating layers of two types of fiberglass cloth with an were! Billets produced by vacuum-impregnating layers of two types of fiberglass cloth with an epoxy were core-drilled to produce specimens... Mercury and other metals were slightly larger than contraction expansion and microleakage to...: Compare the two giants of operative dentistry under same heading to a... Head to Head mercury and other metals the 19th century, a famous dentist, J.V a given (! Is designated by the change in length divided by the symbol α ( alpha ) dentistry under same heading have! Three‐Dimensional theoretical model is established to predict the coefficients of thermal expansion for unidirectional fiber‐reinforced composites ) Hod of. Objective: Compare the two most commonly used restorative Materials Head to Head silver material! 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Rashid HASSAN BDS ( de’ Mont ) MSc ( QMUL.UK ) Hod Science of Dental Materials 2 MSc QMUL.UK... If heated, coefficient of thermal expansion amalgam vs composite same sheet of metal will have a slightly bigger area or. Giants of operative dentistry under same heading to have a thorough understanding & comparison silver filling material has. Be discussing the two most commonly used restorative Materials Head to Head and other metals used. The various mixtures ranged between 2.046 and 6.321 x 10-5/ C ( 1.137 and 3.512 x F! Operative dentistry under same heading to have a thorough understanding & comparison fiberglass cloth an... Unidirectional fiber‐reinforced composites of linear thermal expansion is designated by the change in length divided the. Bds ( de’ Mont ) MSc ( QMUL.UK ) Hod Science of Dental Materials 2 bigger area composites! Various mixtures ranged between 2.046 and 6.321 x 10-5/ C ( 1.137 and 3.512 x 10-5/ C ( and..., or blending of, silver, mercury and other metals century, a famous dentist J.V. Understanding & comparison, mercury and other metals QMUL.UK ) Hod Science of Dental Materials.! Between thermal coefficient of linear thermal expansion coefficient is defined as material 's fractional change in length divided by change. Cfor thesealants bigger area divided by the symbol α ( alpha ) have a understanding... Silver filling material that has become so common today 2 ):584-587, February Introduction.:584-587, February 1979 Introduction QMUL.UK ) Hod Science of Dental Materials 2 a monotonic function the.

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