A 12 5 gram sample of granite initially at 82 0 oc is immersed into 25 0 grams of water initially at 22 0 oc.
A 12 5 g sample of granite initially at 82.
The answer to a 12 5 g sample of granite initially at 82 0 0c is immersed into 25 0 g of water initially at 22 0 0c.
Let s say we want to cool the sample down by 3 degrees.
For water c s 4 18 j g 0 c and for granite c s 0 790 j g 0 c.
A 12 5 g sample of granite initially at 82 degrees celsius is immersed into 25 g of water initially at 22 degrees celsius.
For water cs 4 18j g c and for granite cs 0 790j g c.
A 12 5 g sample of granite initially at 82 0 c is immersed in 25 0 g of water initially at 22 0 c.
A 13 0 g sample of granite initially at 82 0 o c is immersed into 26 0 g of water initially at 23 0 o c.
A 12 5 g sample of granite initially at 82 0oc is immersed into 25 0 g of water initially at 22 0oc.
B 1 55 10 3 0 c.
A 12 5 g sample of granite initially at 82 0 0 c is immersed into 25 0 g of water initially at 22 0 0 c.
We will assume m 5 kg.
A 13 5g sample of granite initially at 80 0 c is immersed into 23 0g of water initially at 20 0 c.
For water cs 4 18j g c and for granite cs 0 790j g c.
What is the final temperature of both substances when they reach thermal equilibrium.
Determine the mass of the sample.
For water cs 4 18 j g oc and for granite cs 0 790 j g oc.
In our example it will be equal to c 63 000 j 5 kg 3 k 4 200 j.
What is the final temperature of both substances when they reach thermal equilibrium.
What is the final temperature of both substances when they reach thermal equilibrium.
A 52 0 0 c.
Calculate specific heat as c q mδt.
For water c s 4 18 j g c and for granite c s 0 790 j g c a.
A 14 0g sample of granite initially at 77 0 c is immersed into 22 0g of water initially at 22 0 c.
What is the final temperature of both substances when they reach thermal equilibrium.
For water cs 4 18 j oc g and for granite cs 0 790 j oc g.
D 27 2 0 c.
For water cs 4 18 j g 0c and for granite cs 0 790 j g 0c.
C 15 7 0 c.
What is the final temperature of both substances when they reach thermal equilibrium.
For water specific heat 4 18 j g degrees celsius and for granite specific heat 0 79 j g degrees celsius.
1 55 10 3 c c.
Then δt 3 k.
What is the final temperature of both substances when they reach thermal equilibrium.
You can also go to advanced mode to type the initial and final values of temperature manually.
For water c p 4 18 j g o c and for granite c p 0 790 j g o c.