d pen equations. Subscript 3 indicates problems whose solutions require more comprehensive wwof a mathematical software or the writing of a computer code to obtain numerical solutions. ays and involve...

Please solve this questiond pen equations. Subscript 3 indicates problems whose solutions require more comprehensive<br>wwof a mathematical software or the writing of a computer code to obtain numerical solutions.<br>ays and involve application of several concepts. Subscript 4 indicates problems that require the<br>PROBLEMS*<br>3.1 The rate of a heterogeneous reaction was measured in a rotating basket<br>reactor. The volume of the basket was 100 mL and it was filled with<br>240 g of catalytic particles whose specific surface area was 9.5 m/g of<br>Scipt I indicates simple problems that require application of equations provided in the text.<br>enpt 2 mdicates problems whose solutions require some more in-depth analysis and modincaton<br>

Extracted text: d pen equations. Subscript 3 indicates problems whose solutions require more comprehensive wwof a mathematical software or the writing of a computer code to obtain numerical solutions. ays and involve application of several concepts. Subscript 4 indicates problems that require the PROBLEMS* 3.1 The rate of a heterogeneous reaction was measured in a rotating basket reactor. The volume of the basket was 100 mL and it was filled with 240 g of catalytic particles whose specific surface area was 9.5 m/g of Scipt I indicates simple problems that require application of equations provided in the text. enpt 2 mdicates problems whose solutions require some more in-depth analysis and modincaton
98<br>CHEMICAL KINETICS<br>catalyst. At 100°C, the measured volume-based reaction rate constant was<br>2.5 s. Determine:<br>a. The order of the reaction, based on the units of the reaction rate constant<br>b. The mass-based rate constant<br>c. The surface-based rate constant<br>

Extracted text: 98 CHEMICAL KINETICS catalyst. At 100°C, the measured volume-based reaction rate constant was 2.5 s. Determine: a. The order of the reaction, based on the units of the reaction rate constant b. The mass-based rate constant c. The surface-based rate constant

Jun 08, 2022
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