There are 4 living fish, but unless the dead one was taken from the tank, there are still 5 fish in the tank.
0.056
B.
0.56
C.
5.6
Answer:
The correct answer is: [B]: " 0.56 " .
Step-by-step explanation:
Note:
" 56% = " " ;
= (56) ÷ (100) = 0.56 ;
→ which corresponds to: " Answer choice: [B]: " 0.56 " .
______________________________________________
Here we will show you step-by-step with detailed explanation how to calculate 48 divided by 32 using long division.
Before you continue, note that in the problem 48 divided by 32, the numbers are defined as follows:
48 = dividend
32 = divisor
Step 1:
Start by setting it up with the divisor 32 on the left side and the dividend 48 on the right side like this:
3 2 ⟌ 4 8
Step 2:
The divisor (32) goes into the first digit of the dividend (4), 0 time(s). Therefore, put 0 on top:
0
3 2 ⟌ 4 8
Step 3:
Multiply the divisor by the result in the previous step (32 x 0 = 0) and write that answer below the dividend.
0
3 2 ⟌ 4 8
0
Step 4:
Subtract the result in the previous step from the first digit of the dividend (4 - 0 = 4) and write the answer below.
0
3 2 ⟌ 4 8
- 0
4
Step 5:
Move down the 2nd digit of the dividend (8) like this:
0
3 2 ⟌ 4 8
- 0
4 8
Step 6:
The divisor (32) goes into the bottom number (48), 1 time(s). Therefore, put 1 on top:
0 1
3 2 ⟌ 4 8
- 0
4 8
Step 7:
Multiply the divisor by the result in the previous step (32 x 1 = 32) and write that answer at the bottom:
0 1
3 2 ⟌ 4 8
- 0
4 8
3 2
Step 8:
Subtract the result in the previous step from the number written above it. (48 - 32 = 16) and write the answer at the bottom.
0 1
3 2 ⟌ 4 8
- 0
4 8
- 3 2
1 6
You are done, because there are no more digits to move down from the dividend.
The answer is the top number and the remainder is the bottom number.
Therefore, the answer to 48 divided by 32 calculated using Long Division is:
1
16 Remainder
(2,3)
(-3,-1)
(2, -1)
The coordinates of the vertices of the image after the 90-degree counter- clockwise rotation about the origin is :
To perform a 90-degree counterclockwise rotation about the origin, follow these steps:
This means that the vertices will become :
( 2 , 3) ⇒ ( - 3, 2 )
( - 3, -1) ⇒ ( 1, -3 )
( 2, - 1) ⇒ ( 1, 2 )
Find out more on rotations at brainly.com/question/2271360
#SPJ1
Answer:125.6 feet
Step-by-step explanation:
diameter=40 feet
π=3.14
Circumference= π x diameter
Circumference=3.14 x 40
Circumference=125.6
Answer:
yes
Step-by-step explanation:
To find the value of the outside temperature, we will convert the Fahrenheit temperature readings to Celsius and use the given information. The outside temperature is approximately 9.5 °C assuming it is constant.
To find the value of the outside temperature, we will solve the problem using the Celsius scale. On the Celsius scale, the freezing point of water is 0 °C and the boiling point is 100 °C. The unit of temperature on this scale is the degree Celsius (°C). We can convert the Fahrenheit temperature readings to Celsius and then find the outside temperature using the given information.
Step 1: Convert the initial temperature from Fahrenheit to Celsius:
Initial temperature = 70 °F = 21.111 °C
Step 2: Convert the temperature after 5 minutes from Fahrenheit to Celsius:
Temperature after 5 minutes = 40 °F = 4.444 °C
Step 3: Calculate the change in temperature:
Change in temperature = (Temperature after 5 minutes - Initial temperature) = (4.444 °C - 21.111 °C) = -16.667 °C
Step 4: Calculate the rate of change of temperature per minute:
Rate of change of temperature per minute = (Change in temperature / 5 minutes) = (-16.667 °C / 5 minutes) = -3.333 °C/minute
Step 5: Calculate the temperature 35 minutes after being taken outside:
New temperature = (Initial temperature + (Rate of change of temperature per minute x 35 minutes)) = (21.111 °C + (-3.333 °C/minute x 35 minutes)) = 9.444 °C
Step 6: Since the thermometer reading 35 minutes later is within one-half degree of the outside temperature, the outside temperature is approximately:
Outside temperature = (New temperature ± 0.5 °C) = (9.444 °C ± 0.5 °C) = 8.944 °C to 9.944 °C
So, assuming the outside temperature is constant, the value of the outside temperature is approximately 9.5 °C.
#SPJ2