the temperature in Austria will be 10 degrees Celsius at half past 11.
We can start by calculating how much the temperature will increase from 8 am to 12 pm:
From 8 am to 9 am: temperature increases by 2 degrees Celsius
From 9 am to 10 am: temperature increases by 2 degrees Celsius
From 10 am to 11 am: temperature increases by 2 degrees Celsius
From 11 am to 12 pm: temperature increases by 2 degrees Celsius
Therefore, the temperature at 12 pm will be:
-5 + 2 + 2 + 2 + 2 = -5 + 8 = 3 degrees Celsius
Now, we need to calculate how much the temperature will increase from 12 pm to 11:30 am:
From 12 pm to 1 pm: temperature increases by 2 degrees Celsius
From 1 pm to 2 pm: temperature increases by 2 degrees Celsius
From 2 pm to 3 pm: temperature increases by 2 degrees Celsius
From 9 pm to 10 pm: temperature increases by 2 degrees Celsius
From 10 pm to 11 pm: temperature increases by 2 degrees Celsius
From 11 pm to 11:30 pm: temperature increases by 1 degree Celsius
Therefore, the temperature at half past 11 will be:
3 + 2 + 2 + 2 + 1 = 10 degrees Celsius
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Answer:
could we have a picture or the equation?? plz
Answer:
is there any more to the question??
Which statements about the linear function and its graph are correct? Check all that apply.
Answer:
A,C, and D
Step-by-step explanation:
Did it on Edgenuity
Answer:
A, C, D
Step-by-step explanation:
Question 2
Find the percent of change.
Answer:
50-35 bro easy , 21
Step-by-step explanation:
Answer:
1X10^6
or
1.04x10^6
Step-by-step explanation:
You start by multiplying 5.2x10^4 by 20 because there are 20 petri dishes with this amount growing, and you get 1,040,000. Now we need to convert it to scientific notation. We know that 1,000,000 is 10^6, so we would move the decimal to the left 6 places and get 1.04x10^6. This is in scientific notation, but we need to keep in mind significant figures (sig figs), so your final answer would be 1x10^6, if that is not what your instructor is looking for, try 1.04x10^6.
The total amount of bacteria growing in the 20 petri dishes is calculated by multiplying the amount of bacteria in each dish (5.2×10^4) by the number of dishes (20), which gives a result of about 1.04×10^6 bacteria.
Given that there are approximately 5.2×10^4 bacteria in each dish and there are 20 petri dishes, we can find the total amount of bacteria by multiplying these two values together. The calculation is as follows: 5.2×10^4 bacteria/dish * 20 dishes = 1.04×10^6 bacteria. Therefore, there are about 1.04×10^6 bacteria in total growing in the petri dishes.