3 cm of water evaporated from a 200-hectare vertical walled reservoir during 24 hours. Storm water was added to the reservoir at a constant rate of 3 m3/s during this period. Determine the volume in ha-cm of water released during the period (through the bottom of the reservoir) if the water level was the same at the beginning and the end of the day.

Answers

Answer 1

Answer:

water released through the bottom of the reservoir in 24 hrs is 1992 ha-cm

Explanation:

Given the data in the question;

A = 200 hectare =  2 × 10⁶ m²

water evaporated Ve = 2 × 10⁶ m² × 3 × 10⁻² = 60000 m³ { in 24 hrs }

Water added by storm in 24hrs Vi = 3 × 24 × 3600 = 259200 m³

now let water released be Vr

ΔV = V_ini - V_final = 0

Vi - Ve - Vr = 0

Vr = Vi - Ve

Vr = 259200 m³ - 60000 m³

Vr = 199200 m³ = 19920000 m² - cm

Vr = 1992 ha-cm

Therefore, water released through the bottom of the reservoir in 24 hrs is 1992 ha-cm


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Print the two strings, firstString and secondString, in alphabetical order. Assume the strings are lowercase. End with newline. Sample output:
capes rabbits

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True or False; If I was trying to find the Voltage of my computer, and I was given the Watts and Amps it uses, I would use Watt's Law.​

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Answer:

true

Explanation:

table saws you can use with __ or __ but not both at the same time

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Answer:

wood or metal

Explanation:

sorry if incorrect

What are the factors that influence the amount of elastic energy in an object? Select all
that are correct.
A. stretching
B. compression
C. hardness
D. mass​

Answers

Answer:the answer is A B and C

A B and C

The more compact the body, the less friction, and the more mass the mass must have friction.

26 V is measured across a 220 Ω resistance. This means that resistor current equals ________. Group of answer choices 1.2 A 57 A 118 mA 5.7 A

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You can use ohm’s law
I=V/R

Which of the following is not a step in a building’s life cycle?


evaluation

maintenance

demolition

resource extraction

Answers

Answer:

resource extraction

Explanation:

common sense

A communications system transmits a message. The probability that the message will be received is p. To be confident that a message is received at least once, the system transmits it n times. If a message is received, the receiver turns off and does not turn back on.

a. Assuming all transmissions are independent, what is the PMF of K, the number of times the pager receives the same message?
b. Assume p=0.8. What is the minimum value of n that produces a probability of 0.95 of receiving the message at least once?

Answers

Answer:

Follows are the solution to the given points:

Explanation:

In point a:

In the PMF of K, that pager receives its same message number of times, that is  [tex]=\tiny \binom{n}{k}p^{k} (1-p)^{n-k}[/tex]

In point b:

The possibility of getting number of cultural at least once in x:

[tex]\to 1-P(\text{not receiving it at all})\\\\\to 1-(0.2)x\\\\\to 1-(0.2)x>0.95\\\\\to (0.2)x<0.05 \\\\[/tex]

appling the [tex]\log[/tex]:

[tex]\to x>0.25[/tex]

The value x is equal to 3.

An automobile having a mass of 1100 kg initially moves along a level highway at 120 km/h relative to the highway. It then climbs a hill whose crest is 80 m above the level highway and parks at a rest area located there. Use a reference with kinetic and potential energy each equal to zero for the stationary highway before the hill. Let g = 9.81 m/s^2.

For the automobile, determine its change in kinetic energy and its change in potential energy, both in kJ. For the automobile, determine its change in kinetic energy, in kJ.
a. -8594
b. -663.1
c. -6.63x10^5
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Answers

Answer:

[tex]-6111.11\ \text{kJ}[/tex]

[tex]863.28\ \text{kJ}[/tex]

Explanation:

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v = Velocity of car = 120 km/h = [tex]\dfrac{120}{3.6}\ \text{m/s}[/tex]

h = Height of hill = 80 m

g = Acceleration due to gravity = [tex]9.81\ \text{m/s}^2[/tex]

Change in kinetic energy

[tex]KE=\dfrac{1}{2}m(u^2-v^2)\\\Rightarrow KE=\dfrac{1}{2}\times 1100\times (0-(\dfrac{120}{3.6})^2)\\\Rightarrow KE=-611111.11\ \text{J}[/tex]

Change in kinetic energy is [tex]-6111.11\ \text{kJ}[/tex]

Change in potential energy is given by

[tex]PE=mgh\\\Rightarrow PE=1100\times 9.81\times 80\\\Rightarrow PE=863280\ \text{J}[/tex]

The change in potential energy is [tex]863.28\ \text{kJ}[/tex].

Merchandise without an expiration date like electronics, tools and home goods typically have a longer

Answers

Answer:

Shelf life.

Explanation:

In Business, an inventory is a term used to describe a list of finished goods, goods still in the production line and raw materials that would be used for the manufacturing of more goods in a bid to meet the unending consumer demands.

Simply stated, an inventory can be classified into three (3) main categories; finished goods, work in progress, and raw materials.

An inventory is recorded as a current asset on the balance sheet because it's primarily the most important source of revenue for a business entity.

Also, the three (3) main cost concept associated with an inventory are;

1. First In First Out (FIFO).

2. Last In First Out (LIFO).

3. Weighted average cost.

Shelf life can be defined as a measure of the length of time that a particular product could be kept or stored without it getting bad or becoming unsuitable for use by the consumers. Thus, the shelf life of a product is largely dependent on its expiration date.

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True or false Self Driving Cars are examples of emerging technology

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true! 99% of time they are smart cars!

True or False; The Neutrons in an atom have a neutral charge.​

Answers

Answer:

true

Explanation:

if it is not true it is false

Answer:

False.

Explanation:

Neutrons have no charges.

What are the advantages to a quality
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Answers

Ans: A quality handsaw makes jobs such as crosscutting moldings, cleaning out dovetails and flush cutting dowels and pegs faster, cleaner and safer. There are myriad different types and sizes of blades for working with wood and other materials.

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Answers

Answer:

Explain any five applications of computer modeling in beams.

Explanation:

What is the advantage to the speed or
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One of the benefits of this one is that on here, on the fixed end, you have a little butterfly nut, you can actually reverse this, put it on the other end of the clamp, put the screw back in – and now, if you wish to glue something and spread it out, (imagine a door frame with one of the larger clamps. It could be a cat-flap, it could be a rabbit hutch, bird box). What you can now do is actually use this to actually spread out and hold something whilst it glues or while you need to drill through it. Multi-purpose, very useful.

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[tex] \alpha [/tex]

Answers

Answer:

fxruwrisris84drid85d59s59e95etod

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Under conditions for which the same room temperature is maintained by a heating or cooling system, it is not uncommon for a person to feel chilled in the winter but comfortable in the summer. Consider a room whose air temperature is maintained at 24ºC throughout the year, while the walls of the room are nominally at 26°C and 16°C in the summer and winter, respectively. The exposed surface of a person in the room may be assumed to be at a temperature of 32°C throughout the year and to have an emissivity of 0.90. The coefficient associated with heat transfer by natural convection between the person and the room air is approximately 2 W/m2·K.

Answers

Answer:

Hello your question is incomplete below is the missing part of your question

Determine Heat flux due to convection

answer :  16 w/m^2

Explanation:

Room temperature = 24°c

Room temperature during summer = 26°c

Room temperature during winter = 16°c

surface temp of person = 32°C

emissivity = 0.90

coefficient ( h ) = 2 W/m2.K

Determine Heat flux due to convection

Q" = h ( Δ T )  = coefficient * ( surface temp of person - room temperature )

                      =  2 * ( 32 - 24 ) = 16 w/m^2

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