1. Which are the archetypes does Verbeke distinguish? Draw the figures associated with these archetypes. Verbeke distguish between 4 types of archetypes and they are the following: Centralized exporter: Home country managed firm. Firm specific advantage in its final products. Standardized products manufactured at home. Only the transferable firm specific advantages are taken to the host country‚ meaning that they try to make exporting successful in international markets. No development of location
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A specific phobia is an irrational fear of a usually harmless object‚ place or situation. This fear leads people to dread confronting everyday situations‚ or avoid them altogether. ‘The most common specific phobias are agoraphobia‚ the fear of crowded places and arachnophobia‚ the fear of spiders’ (Davenport‚ 1992‚ pg. 239). The main symptoms of person suffering from specific phobia according to the Diagnostic and Statistical Manual of Mental Disorders (DSM-IV)‚ include ‘a marked and persistent
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Specific gravity What is specific gravity? Archimedes discovered that the weight of body in air minus its weight in water is equivalent to the weight of the water displaced by the body. Specific gravity is defined as "The weight of a body compared with the weight of an equal amount of pure water at 4°C (4°C is the temperature at which water is densest). When a body is placed in water‚ the volume of water displaced is equal to the volume of the body. When the body is placed in water that it
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Specific Deterrence Critical Thinking Critique Your name Park University Author Note This paper was prepared for Criminology CJ200‚taught by Professor____________. The theory of specific deterrence holds that criminal sanctions should be so powerful that known criminals will never repeat their criminal acts. Critical Thinking The theory of specific deterrence holds that criminal sanctions should be powerful enough that convicted criminals will never repeat the criminal
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AIT Physics 1 Honors Laboratory: Specific Heat and Conservation of Energy When energy in the form of heat Q is added to a material‚ the temperature of the material rises. Note that temperature‚ in units of degrees Celsius (°C) or Kelvin (K)‚ is a measure of how hot or cold a substance is‚ while heat‚ in units of joules (J) or calories (cal)‚ is a measure of its thermal energy. 1cal = 4.19J. A measure of the efficiency with which a substance can store this heat energy is known as specific heat capacity
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silent action is paralleled in Charles Dickens novel‚ A Tale of Two Cities. Dickens speaks of a woodman‚ personified as fate‚ and a farmer‚ who is used to picture death‚ working silently but purposefully towards the French Revolution‚ getting ready wood for scaffolds‚ guillotines and tumbrels. As well as portraying the silent nature of drowning‚ Dickens also uses this motif to bring out another aspect of the revolution. In A Tale of Two Cities‚ Dickens uses the motif of drowning to portray the stages
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Introduction: Specific gravity or relative density is the ratio of the density of a substance to the density of a given reference material. Specific gravity usually means relative density with respect to water. Temperature and pressure must be specified for both the sample and the reference. The following formula is used- Specific gravity= density of sample/density of same volume of water. Specific gravity is commonly used as a simple means of obtaining information about the concentration of solutions
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Specific Performance MT311 Business Law Part I There are four situations we have to review in terms of specific performance and possible breach of contract. First we must understand the elements of specific performance then we can evaluate how they relate to each scenario. “In some situations‚ damages are an inadequate remedy for a breach of contract…equitable remedies include rescission and restitution‚ specific performance‚ and reformation” (Miller & Jentz‚ 2009). Specific performance
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Application of Specific Force and Specific Energy 1. Determine the energy Loss in a NHJ Solution: Applying Momentum equation γQ ( V2 − V1 ) = P1 − P2 g γ Q 2 ( y1 − y 2 ) gb 2 y1y 2 2 2 2 = y1 − y 2 ( ) Q2 2gb Q2 b 2 = ( y1 + y2 ) y1y2 4 = q2 q 2 ( y1 + y 2 ) y1y 2 = (1) 2g 4 Specific energy equation y1 + V12 V2 = y 2 + 2 + ∆E 2g 2g Q2 2 2gy1 b 2 ∆E = y1 + − y2 − Q2 2 2gy 2 b 2 1 ⎤ q2 ⎡ 1 ∆E = ( y1 − y 2 ) + ⎢ 2 − 2⎥ 2g ⎢ y1 y 2 ⎥ ⎣ ⎦ ⎡ q2 1 ⎤ = ( y1 −
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INTRODUCTION Whenever two objects with different initial temperatures are put in contact with each other‚ the warmer one will cool down‚ and the cooler one will warm up‚ until they reach the same temperature. We now know that this has to do with the motions of molecules: what we sense as temperature is related to the average kinetic energy of the molecules of each material: the faster they’re vibrating around‚ the hotter the object feels. We can sidestep this molecular picture by dealing with
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