Module 3: Bloom Energy - The Product

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1.
1 point
Without our CSC (Combined Sintering & Conditioning) machine, we separately sinter, and then condition our fuel cell stacks. If you add sintering time to conditioning time, how long does it currently take to both sinter and condition BE's fuel cell stacks? (M3.2.1)
2.
1 point
How does Bloom Energy apply the conductive inks onto the electrolytes? (M3.1.1)
3.
1 point
Which of the following is encompassed in Bloom Energy’s Balance Of Plant? (M3.2.2)
4.
1 point
Which City Hall location will host Bloom Energy servers? (M3.6.1)
5.
1 point
Where is Bloom Energy's energy server repair & overhaul located? (M3.2.2)
6.
1 point
What is not an input monitored by the Remote Monitoring Control Center (M3.6.2)
7.
1 point
During customer installation, along with BE's energy servers, what 2 other systems must be installed on-site in order to operate our servers? (M3.2.2)
8.
1 point
What kind of power does our current system operate to match most industrial power generation? (M3.5.1)?
9.
1 point
Which type of fossil fuel is most relevant to our Bloom Energy servers? (M3.5.1)
10.
1 point
Why are Solid Oxide Fuel Cells a good choice over other types of fuel cells? (M3.4.1)
11.
1 point
What does “E1” and “E2” refer to? (M3.1.1)
12.
1 point
Why are the types of fuel cells we produced named “solid oxide fuel cells”? (M3.4.1)
13.
1 point
What temperature do our fuel cells run at? (M3.2.1)
14.
1 point
What is the difference between E2, E2', and E2"? (M3.1.1)
15.
1 point
Where was Bloom Energy's first server installed? (M3.6.1)
16.
1 point
Which of the following is a component of a fuel cell stack? (M3.1.1)
17.
1 point
The black conductive ink applied onto BE's electrolyte has a positive charge. (M3.1.1)
18.
1 point
How much power does each individual Catalina power module produce? (M3.5.1)
19.
1 point
Where does Hot Box assembly occur? (M3.2.2)
20.
1 point
Name the other popular type of fuel cell other than Solid Oxide Fuel Cells. (M3.4.1)