7/27/2018 0 Comments Ksp downloadThere are 3 ways of doing things: the right way, the wrong way and the KERBAL way. Though, on reflection, that's usually just the wrong way, but faster and with more explosions. This channel has never shied away from trying to answer questions no one has ever asked, like ‘Can you land a submarine on Eve' 'Can you land on the Mun using only solid fuel' and ‘Can you fly a Space Shuttle with just the spacebar’. Twitter....► Discord....► Patreon....► Second channel..► The song is called 'H_ook_ed o+n a Fe_eling' (without the underscores or plusses, these were added for reasons). Kerbal Space Program is a space flight simulation video game developed and published by Squad for Microsoft Windows, OS X, Linux, PlayStation 4, and Xbox One.In the game, players direct a nascent space program, staffed and crewed by green humanoid aliens known as 'Kerbals'. The game features a realistic orbital physics engine. Solubility Product Constants, K sp. Solubility product constants are used to describe saturated solutions of ionic compounds of relatively low solubility. FRANKFORT, Ky. (June 22, 2018) — The Kentucky State Police Academy presented diplomas to 42 new troopers at ceremonies held in Frankfort today. Is called solubility product constant, or simply solubility product. In general, the solubility product of a compound represents the product of of ions raised to the power of their respective stoichiometric coefficients in the equilibrium reaction. Here's an example to better demonstrate the concept. Let's consider the saturated solution of silver chloride ( #AgCl#), where an exists between the dissolved ions and undissolved silver chloride according to the following reaction: #AgCl_((s)) rightleftharpoons Ag_((aq))^(+) + Cl_((aq))^(-)# Since this is an equilibrium reaction, we can write the equilibrium constant for it: #K = ([Ag^(+)]*[Cl^(-)])/([AgCl])#. Now, the concentrations of solids are either unknown or assumed to be constant, so this reaction becomes #K * [AgCl] = K_(sp) = [Ag^(+)]*[Cl^(-)]# The magnitude of #K_(sp)# directly indicates the solubility of the salt in water, since #K_(sp)# is derived from the concentrations of ions in equilibrium reactions. Thus, higher concentrations of ions mean greater solubility of the salt. When trying to write the equation for #K_(sp)#, you need to know how to break the compound into ions (identify the monoatomic and polyatomic ions), how many moles of each ion are formed, and the charge on each ion. In a saturated solution the solid is in equilibrium with its ions e.g: #CaCO_(3(s))rightleftharpoonsCa_((aq))^(2+)+CO_(3(aq))^(2-)# The expression for #K_(sp)# is: #K_(sp)=[Ca_((aq))^(2+)][CO_(3(aq))^(2-)]# We don't include the concentration of the solid as this is assumed constant. So if we know the concentration of the ions you can get #K_(sp)# at that particular temperature. Using #K_(sp)# enables you to find the limit of concentration before a solid forms.
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