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COMP532 SPECIAL PROJECT 20201.docxCOMP643 FINAL PROJECT.pdf
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4. An agent consumes quantity (x1,x2) of goods 1 and 2. Here is his utility function: ?(?1, ?2) = √?1 + 2 ∗ ?2, his budget constraint is p1x1+p2x2 = m. a. Calculate the agent’s Marshallian demand (x∗1 , x∗ 2). b. When would the agent’s consumer’s problem have a corner solution?5. An agent consumes quantity (x1,x2) of goods 1 and 2. Here is his utility function: ?(?1, ?2) = 2 ∗ ?1 ∗ ?2 + 1, ?1 = ?2 = $1, ℎ?? ??????...
?. ??? ????? ?? ????? ?. ?????? ????? ?? ?????(?) ?. ?????? ????? of ??^(-2) _4(?) ???? 0.335875 grams of ??^(-2) _4(?) ???? ??. ????% of ??^(-2) _4(?) ???? 1)Based on your data, what is the likely identity (complete chemical formula) of the unknown sulfate? Explain (include calculations as appropriate).
Buffer capacity refers to the amount of acid or base a buffer can absorb without a significant pH change. It is governed by the concentrations of the conjugate acid and bate components of the buffer. A 0.5 M buffer can "absorb" five time as much acid or lease as a 0.1 M buffer tor a given pH change. In this problem you begin with a buffer of known pH and concentration and calculate the new pH after a particular quantity...
Diborane, B2H6, can be produced by the following reaction: 〖2NaBH〗_4 (s)+H_2 〖SO〗_4 (aq)→〖2H〗_2 (g)+〖Na〗_2 〖SO〗_4 (aq)+B_2 H_6 (g) Calculate the volume, in milliliters, of 0.0875-M H2SO4 needed to completely react with 1.35 g NaBH4.
None of the above is the correct answer and I need
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Kramer goes bowling and decides to employ the force of gravity to pick up a spare." He rolls the 7.0-kg bowling ball very slowly so that it comes to rest a center-to-center distance of 0.25 m from the one remaining 1.5-kg bowling pin. Star 1) Determine the force of gravity between the ball and the pin and comment on the efficacy...
Please help me. None of the above is the correct
answer and I need urgent help. Thanks a lot!!!
SU Problem In 1994, the performer Rod Stewart drew over 3.0 million people to a concert in Rio de Janeiro, Brazil. The people in the group had an average mass of 80 kg. Standard E Problem 1) What collective gravitational force would the group have on a 5.5-kg eagle soaring 270 m above the throng? If you treat the group as...
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