The genetic algorithm, which is based on natural selection, the mechanism that propels biological evolution, is a technique for resolving both limited and unconstrained optimization issues. A population of unique solutions is repeatedly modified by the genetic algorithm.
A genetic algorithm (GA), which is a subclass of the larger class of evolutionary algorithms in computer science and operations research, is a metaheuristic that takes its cues from the process of natural selection (EA). Genetic algorithms frequently employ biologically inspired operators including mutation, crossover, and selection to produce high-quality solutions to optimization and search issues. Solving sudoku puzzles, hyperparameter optimization, and performance-enhancing decision trees are a few examples of GA applications. To solve complex issues with a greater number of variables and potential outcomes/solutions, a genetic algorithm is used. To select the best answers, combinations of several solutions are run through a Darwinian-based algorithm. The poorer solutions are then replaced with the offspring of good solutions.
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this is a mobility synthesis problem. the goal of the mobiltity synthesis is to design the type/topology of a linkage for specified mobility (dof). show the equations used to determine the answers and submit your complete work in the written part.
Mobility synthesis involves finding the appropriate linkage type and topology for a given degree of freedom (DOF). The specific equations used depend on the desired DOF.
How to explain the mobilitySome common methods include:
Four-bar linkage: This is used for creating planar motion with 1 DOF, such as a crank-slider mechanism. The input and output velocities can be determined using the law of cosines.
Six-bar linkage: This is used for creating planar motion with 2 DOFs, such as a double crank mechanism. The input and output velocities can be determined using the law of cosines and the law of sines.
Eight-bar linkage: This is used for creating planar motion with 3 DOFs. The input and output velocities can be determined using the law of cosines, the law of sines, and vector loop equations.
Stewart-Gough platform: This is used for creating spatial motion with 6 DOFs. The input and output velocities can be determined using the screw theory.
It is important to note that for each linkage type, the specific equations and calculations required will depend on the design specifications and constraints.
In order to complete this mobility synthesis problem, you should determine the desired DOF, choose an appropriate linkage type, and perform the necessary calculations and analysis to determine the linkage topology that satisfies the requirements.
An overview was given based on the incomplete information.
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Which Australian standard endorses drawing symbols and shape codes for RC drawings?
Answer:
1100
Drafting Standard AS 1100
AS1100 is the drawing standard that is used within Australia. It defines every aspect of the drawing. AS1100 provides a standard that (if followed by all companies), allows for a clarity, understanding and uniformity across all drawings generated nation wide.
The Australian standard that endorses drawing symbols and shape codes for RC drawing is; AS1100
Understanding the Use of CodesDifferent countries have their different codes and drawing standards that serve as a basis for drawings. For most of Europe, it is Euro Code while for US it is ACI Code and for UK, it is BS Code.
Other codes of countries could be BS 5950 which is steel code for the UK and BS 8110 which is concrete code for the UK. Whereas, for Australia it is called AS1100 Code for drawing symbols and shape codes.
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FILL THE BLANK.hurricane winds rotate in a clockwise direction in ____.
Hurricane winds rotate in a clockwise direction in the Southern Hemisphere, while in the Northern Hemisphere, they rotate counterclockwise due to the Coriolis effect caused by the Earth's rotation.
hurricane winds rotate in a clockwise direction in the Southern Hemisphere.
In the Northern Hemisphere, hurricane winds rotate counterclockwise. This is due to the Coriolis effect, which is caused by the rotation of the Earth. The Coriolis effect causes moving air or water to be deflected to the right in the Northern Hemisphere and to the left in the Southern Hemisphere.
In the Southern Hemisphere, the deflection results in the winds of a hurricane rotating clockwise around the eye of the storm. This is opposite to the rotation observed in the Northern Hemisphere. Understanding the direction of hurricane winds is crucial for tracking and predicting their movements.
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If the goal is to power three-phase AC motors, what kind of power distribution panel would you want to use?
There are different kinds of Ac motors. If the goal is to power three-phase AC motor, the three-phase motor can be run from a single-phase power source.
It is possible to run a 3 phase motor on single phase power?The act of running a three phase motor on single phase power is very possible. The thing one has to do is to connect or wire the single phase power to the input side of the variable frequency drive that one has and then connect or wire the three phase power of one's motor to the output part of the drive.
Conclusively, A three phase system is known to be able to send a lot of power when viewed with the single phase system. The three circuit conductors is known to have three alternating currents
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In I-Q modulation technique, many symbols or signals with different amplitude and phase are generated. What is the map of all of the symbols called:____.
a. signal diagram.
b. frequency spectrum.
c. 2-D graph.
d.constellation diagram.
Answer:
In I-Q modulation technique, many symbols or signals with different amplitude and phase are generated. What is the map of all of the symbols called:____.
d. constellation diagram.
Explanation:
A constellation diagram is a representation of all the possible symbols that a system can transmit. It shows these as a collection of points on the map. For a signal modulated by a digital modulation scheme, the constellation diagram is used to display both the ideal (reference) signal and the actual measured signal on the same plot. Modulation simply means the process of converting data into electrical signals so that they are optimized for transmission.
Determine the flow velocities at the inlet and exit sections of an
inclined tapering pipe using fluid flow theory and given pressure
readings and flow rates.
There is a sloping pipeline that has one end 1.35 m higher than the
other. The pipe section tapers from 0.95 m diameter at the top end to
0.44m diameter at the lower end. The difference in pressure between
the two sections is 12.35kPa, with pressure being greater at higher
level.
Your task is to determine the inlet and exit velocities and the
volume
flow rate of the inclined pipe.
Answer:
The inlet velocity v₁ = 6.66 m/s, the exit velocity v₂ = 7.32 m/s and the volume flow rate Q = 4.72 m³/s
Explanation:
Using Bernoulli's equation
P₁ + ρgh₁ + 1/2ρv₁² = P₂ + ρgh₂ + 1/2ρv₂²
P₁ - P₂ + ρgh₁ - ρgh₂ = 1/2ρv₂² - 1/2ρv₁²
ΔP + ρgΔh = 1/2ρ(v₂² - v₁²) (1)
where ΔP = pressure difference = 12.35 kPa = 12350 Pa
Δh = height difference = 1.35 m
From the flow rate equation Q = A₁v₁ = A₂v₂ and v₁ = A₂v₂/A₁ = d₂²v₂/d₁² where v₁ and v₂ represent the inlet and exit velocities from the pipe and d₁ = 0.95 m and d₂ = 0.44 m represent the diameters at the top end and lower end of the pipe respectively.
Substituting v₁ into (1), we have
ΔP + ρgΔh = 1/2ρ(v₂² - (d₂²v₂/d₁² )²)
ΔP + ρgΔh = 1/2ρ(v₂² - (d₂/d₁)⁴v₂²)
v₂ = √[2(ΔP + ρgΔh)/ρ(1 - (d₂/d₁)⁴)}
substituting the values of the variables, we have
v₂ = √[2(12350 Pa + 1000 kg/m³ × 9.8 m/s² × 1.35 m)/(1000 kg/m³ (1 - (0.44 m/0.95 m)⁴))}
= √[2(12350 Pa + 13230 Pa)/(1000 kg/m³ × 0.954)]
= √[2(25580 Pa)/954 kg/m³]
= √[51160 Pa/954 kg/m³]
= √53.627
= 7.32 m/s
v₁ = d₂²v₂/d₁²
= (0.44 m/0.95 m)² × 7.32 m/s
= (0.954)² × 7.32 m/s
= 6.66 m/s
The volume flow rate Q = A₁v₁
= πd₁²v₁/4
= π(0.95 m)² × 6.66 m/s ÷ 4
= 18.883 m³/s ÷ 4
= 4.72 m³/s
So, the inlet velocity v₁ = 6.66 m/s, the exit velocity v₂ = 7.32 m/s and the volume flow rate Q = 4.72 m³/s
Objective A: Right turn True or Flase
Answer:
True
Explanation:
Because a object is a smart thing to use doing them problem
The town of Edinkira has filed a complaint with the state department of natural resources (DNR) that the city of Quamta is restricting its use of the Umvelinqangi River because of the discharge of raw sewage. The DNR water quality criterion for the Umvelinqangi River is 5.00 mg/L of DO. Edinkira is 15.55 km downstream from Quamta. The water quality parameters for the raw sewage (i.e., wastewater) and Umvelinqangi River are shown in the table below:Parameter Wastewater Umvelinqangi RiverFlow rate (m3/s) 0.1507 1.08 BOD5 at 16 °C (mg/L) 128.00 N/A Ultimate BOD at 16 °C (mg/L) N/A 11.40 DO (mg/L) 1.00 7.95 k at 20 °C (day 1) 0.4375 N/A flow velocity (m/s) N/A 0.390 depth (m) N/A 2.80 temperature (°C) 16 16 bed-activity coefficient N/A 0.20(a) What is the DO at Edinkira? Does that meet the DNR water quality standard? (b) What is the critical DO and where (at what distance) downstream does it occur? (c) Under the provisions of the Clean Water Act, the U.S. Environmental Protection Agency established a requirement that municipalities had to provide secondary treatment of their waste. This was defined to be treatment that resulted in an effluent BOD5 that did not exceed 30 mg/L. The discharge from Quamta is clearly in violation of this standard. Given the data in (a) and (b), rework the problem, assuming that Quamta provides treatment to lower the BOD5 to 30.00 mg/L (at 16 °C).
The dissolved oxygen (DO) at Edinkira is approximately 2.7884 mg/L, which falls below the required standard of 5.00 mg/L. The critical DO does not occur downstream within the provided data.
(a) To determine the dissolved oxygen (DO) at Edinkira, we need to consider the factors affecting DO, such as the BOD5 (Biochemical Oxygen Demand) and the flow rate of the river.
From the table, we can see that the DO in the wastewater is 1.00 mg/L and the DO in the Umvelinqangi River is 7.95 mg/L. However, we don't have the BOD5 value for the river.
To calculate the DO at Edinkira, we can use the Streeter-Phelps equation, which relates the BOD5, DO, and flow rate of the river:
\(DO = DOr + (DOb - DOr) \times (1 - e^{(-kt)})\)
Where:
First, let's calculate the decay constant (k):
k = (ln(DOr/DOb)) / (5 x t)
Given:
k = (ln(7.95/1.00)) / (5 x 39.87)
k ≈ 0.0341
Now, we can substitute the values into the equation to calculate the DO at Edinkira:
(b) The critical DO is the minimum DO required to meet the DNR water quality criterion of 5.00 mg/L. To find the distance downstream where the critical DO occurs, we can rearrange the Streeter-Phelps equation:
t = -(1/k) x ln((D - DO)/ (D - DOr))
Where:
t = Distance downstream
D = Critical DO (5.00 mg/L)
Substituting the values:
The natural logarithm of a negative number is undefined, so the critical DO does not occur downstream within the given data.
(c) If Quamta provides treatment to lower the BOD5 to 30.00 mg/L, we can repeat the calculations using the new BOD5 value. The new DOb would be 30.00 mg/L. We would then recalculate the decay constant (k) and use it in the Streeter-Phelps equation to find the new DO at Edinkira and the distance downstream where the critical DO occurs.
However, since the new BOD5 value is not provided in the question, we cannot proceed with this calculation.
In summary, the DO at Edinkira is approximately 2.7884 mg/L, which does not meet the DNR water quality standard of 5.00 mg/L. The critical DO does not occur downstream within the given data.
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4. Lockout/tagout (LOTO) is a safety procedure that ensures dangerous machines are properly shut off and not started up again prior to the completion of maintenance or servicing work?
A) True
b) False
Answer:
The answer is True
Explanation:
What is the equivalent inductance (in Henries) for three inductors in parallel having values of L1=2 Wb/Amp, L2=4.2 Wb/Amp and L3=1.3 Wb/Amp?
An electrical circuit component known as an inductor is equivalent inductance (measured in Henries) for three parallel inductors with values of L1=2 Wb/Amp, L2=4.2 Wb/Amp, and L3=1.3 Wb/Amp.
To calculate the equivalent inductance in a parallel circuit, use the inductors in parallel calculator. To find out how to calculate the overall inductance in a circuit and about the parallel combination of inductors, keep reading. You will also discover an illustration of how to use the parallel inductance calculator to get the total inductance in a parallel circuit.
You can use the inductors in series calculator to determine the equivalent inductance in a series circuit.
When all of the coils' ends are connected to one point and the other end of all the coils is connected to another point, we can say that a group of coils (or inductors) are connected in parallel. These two are connected to the AC source.
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Is reinforcement needed in a retaining wall
Q1. Convert 200 km
hur
to inches/
ms
Answer:
2.187 inches
hope it would be helpful
Answer:
2.187 in.
Explanation:
1. It's very kind _______ you to help us. Thanks a lot. A. for B. to C. with D. of
All of these are true about aluminum EXCEPT that it:
A) has a self-healing, corrosion-resistant coating.
B) is resistant to galvanic corrosion.
C) is a nonferrous metal.
D) is easy to be initially formed.
All of the aforementioned are true characteristics and properties of aluminum except: B. is resistant to galvanic corrosion.
What is aluminum?Aluminum can be defined as a silvery white metal and it is considered to be the most abundant metal found in the Earth's crust. Also, it is represented with the chemical symbol "Al" and it has an atomic number of thirteen (13).
This ultimately implies that, aluminum is found in Group 3 on the periodic table because it has three (3) valence electrons, which are found in the outermost shell of its atomic nucleus.
The characteristics and properties of aluminum.Some of the characteristics and properties of aluminum include the following:
It has a self-healing and corrosion-resistant coating.It is a nonferrous metal.It is easy to be initially manufacture or formed.Read more on aluminum here: https://brainly.com/question/25869623
When framing a wall, temporary bracing is
used to support, plumb, and straighten the wall.
used to support, level, and straighten the wall.
used to square the wall before it is erected.
removed before the next level is constructed.
what substance does light travel through before putting water in the cup
What are some sources of resistance? (Check all
that apply.)
worn or damaged cables
loose cable connections
weak springs on work clamps
painted surfaces
rusty tables
Answer:
All of them.
Explanation:
I take this class rn too and those are answers
Write out simple definitions in words and equations for the following:
a. a1
b. b1
c. S11
d. S12
e. S21
f. S22
Answer:
a) a1 : This is the incident voltage at port 1
b) b1 : This is the deflected voltage at port 1 ;
b1 = \(S_{21} a_{1} + S_{22} a_{2}\)
c) S11 ; This is the input port voltage reflection coefficient when the input voltage is at port 1
S11 = \(\frac{V1^-}{V1^+} |v2^+=0\)
d) S12 : this is the gross voltage gain
S12 = \(\frac{V1^-}{V2^+}| v1 ^+\)
e) S21 : This is the forward voltage gain
S21 = \(\frac{V2^-}{V1^+} | v2^+\)
f) S22 : output port voltage reflection coefficient
S22 = \(\frac{v2^-}{v2^+} | v1^+ = 0\)\(\frac{v2^-}{v2^+} | v1^+ = 0\)
Explanation:
a) a1 : This is the incident voltage at port 1
b) b1 : This is the deflected voltage at port 1 ;
b1 = \(S_{21} a_{1} + S_{22} a_{2}\)
c) S11 ; This is the input port voltage reflection coefficient when the input voltage is at port 1
S11 = \(\frac{V1^-}{V1^+} |v2^+=0\)
d) S12 : this is the gross voltage gain
S12 = \(\frac{V1^-}{V2^+}| v1 ^+\)
e) S21 : This is the forward voltage gain
S21 = \(\frac{V2^-}{V1^+} | v2^+\)
f) S22 : output port voltage reflection coefficient
S22 = \(\frac{v2^-}{v2^+} | v1^+ = 0\)\(\frac{v2^-}{v2^+} | v1^+ = 0\)
Engine oil (unused) flows at 1.81 x 10^-3 kg/s inside a 1-cm diameter tube that is heated electrically at a rate of 76 W/m. At a particular location where flow and heat transfer are fully developed, the wall temperature is 370K. Determine:
a. The oil mean temperature.
b. The centerline temperature.
c. The axial gradient of the mean temperature.
d. The heat transfer coefficient.
Answer:
(a)Tb = 330.12 K (b)Tc =304.73 K (c)19.81 K/m (d) h =60.65 W/m². K
Explanation:
Solution
Given that:
The mass flow rate of engine oil m = 1.81 x 10^-3 kg/s
Diameter of the tube, D = 1cm =0.01 m
Electrical heat rate, q =76 W/m
Wall Temperature, Ts = 370 K
Now,
From the properties table of engine oil we can deduce as follows:
thermal conductivity, k =0.139 W/m .K
Density, ρ = 854 kg/m³
Specific heat, cp = 2120 J/kg.K
(a) Thus
The wall heat flux is given as follows:
qs = q/πD
=76/π *0.01
= 2419.16 W/m²
Now
The oil mean temperature is given as follows:
Tb =Ts -11/24 (q.R/k) (R =D/2=0.01/2 = 0.005 m)
Tb =370 - 11/24 * (2419.16 * 0.005/0.139)
Tb = 330.12 K
(b) The center line temperature is given below:
Tc =Ts - 3/4 (qs.R/k)= 370 - 3/4 * ( 2419.16 * 0.005/0.139)
Tc =304.73 K
(c) The flow velocity is given as follows:
V = m/ρ (πR²)
Now,
The The axial gradient of the mean temperature is given below:
dTb/dx = 2 *qs/ρ *V*cp * R
=2 *qs/ρ*[m/ρ (πR²) *cp * R
=2 *qs/[m/(πR)*cp
dTb/dx = 2 * 2419.16/[1.81 x 10^-3/(π * 0.005)]* 2120
dTb/dx = 19.81 K/m
(d) The heat transfer coefficient is given below:
h =48/11 (k/D)
=48/11 (0.139/0.01)
h =60.65 W/m². K
TRUE / FALSE. once the monitor finishes processing the character on the screen, dsr[15] becomes 1
Once the monitor finishes processing the character on the screen, dsr[15] becomes 1. False. The statement is incorrect.
The DSR (Data Set Ready) signal is a hardware signal typically used in serial communication protocols. It is a handshake signal indicating the readiness of a data set or device to receive or send data. In the context of a monitor, DSR is not directly related to processing characters on the screen.
The processing of characters on a monitor typically involves the rendering of pixels based on the input data. Once the rendering process is completed, the monitor may update the screen accordingly. However, this process does not automatically trigger a change in the DSR signal. The DSR signal depends on the specific hardware and communication protocol being used and is typically controlled by the transmitting or receiving device, not the monitor itself.
Therefore, the statement that DSR[15] becomes 1 after the monitor finishes processing a character on the screen is false. The completion of character processing on the screen does not have a direct impact on the DSR signal.
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Un grupo de trabajadores tenia un rendimiento poco satisfactorio. Elena trabajo varias noches para poner por escrito las metas que deberian cumplir sus subordinados. Les especifico a cada uno de ellos su tarea de produccion y les conmino a cumplir a como diera lugar. que tipo de lider es?
Answer:
Elena es una líder de tipo autoritario.
Explanation:
El liderazgo autoritario representa el control individual por parte del líder de la toma de decisiones y el proceso de elección y planificación en una determinada organización.
En este liderazgo no se promueve la participación efectiva del equipo en los proyectos, solo el líder toma todas las decisiones necesarias y generalmente oprime a sus subordinados. Así, genera muchas veces situaciones de tensión y agotamiento entre los empleados y demás subordinados.
First drilled to a depth of 1 47/64 how much deeper must it be drilled to reach the depth indicated?
Answer:
1 13/64
Explanation:
The depth of the hole is the height of the block less the remaining material below the hole:
depth = 1 3/8 +1 15/16 - 3/8 = (1 3/8 -3/8) +1 15/16 = 2 15/16
We want to find the difference between this depth and the depth of the hole already drilled:
2 15/16 -1 47/64 = 2 60/64 -1 47/64
= (2 -1) +(60 -47)/64 = 1 13/64
The hole must be drilled 1 13/64 deeper to match the drawing.
Which of the following is an example of a tax
Answer:
A tax is a monetary payment without the right to individual consideration, which a public law imposes on all taxable persons - including both natural and legal persons - in order to generate income. This means that taxes are public-law levies that everyone must pay to cover general financial needs who meet the criteria of tax liability, whereby the generation of income should at least be an auxiliary purpose. Taxes are usually the main source of income of a modern state. Due to the financial implications for all citizens and the complex tax legislation, taxes and other charges are an ongoing political and social issue.
I dont know I asked this to
Explanation:
One kmole of gas mixture at a total pressure of 250 kPa and 303 K contains 10% CH4, 30% C2H6, and 60% H2 by volume. The absolute velocities of each species are -10 m/s, -5 m/s, and 15 m/s, respectively, all in the direction of the zaxis. a. Determine the molar average velocity, Umol for the mixture. 6.5 m/s b. Evaluate the four fluxes: JCH4-mol, NCH4-mol
Answer:
hi its very easy to say tgat i know this answer very so my friend please give me free points broVariation in the number and types of molecules within cells provides organisms a greater ability to survive and or reproduce in different environments.
Organisms have the capacity to react to a wide range of environmental stimuli thanks to molecular variation.
How does an organism's ability to live and reproduce in various circumstances depend on the types of molecules that make up its cells?Organisms have the capacity to react to a wide range of environmental stimuli thanks to molecular variation. Organisms are better able to live and/or reproduce in a variety of situations due to variation in the amount and types of molecules that make up cells.
The amount and types of molecules that make up cells vary, which gives organisms a better chance of surviving and/or procreating in various situations.
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question-
Explain the connection between variation in the number and the types of molecules within cells to the ability of the organism to survive and/or reproduce in different environments.
A site is underlain by a soil that has a unit weight of 118 lb/ft3. From laboratory shear strength tests that closely simulated the field conditions, the total stress parameters were measured to be C total = 250 lb/ft2 and φ total = 29°. Estimate the shear strength on a horizontal plane at a depth of 12 ft below the ground surface at this site in lbs/ sq ft
Answer: the shear strength at a depth of 12 ft is 1034.9015 lb/ft²
Explanation:
Given that;
Weight of soil r = 118 lb/ft³
stress parameter C = 250 lb/ft²
φ total = 29°
depth Z = 12 ft
The shear strength on a horizontal plane at a depth of 12ft
ζ = C + δtanφ
where δ = normal stress
normal stress δ = r × z = 118 × 12 = 1416
so
ζ = C + δtanφ
ζ = 250 + 1416(tan29°)
ζ = 250 + 1416(tan29°)
ζ = 250 + 784.9016
ζ = 1034.9015 lb/ft²
Therefore the shear strength at a depth of 12 ft is 1034.9015 lb/ft²
What does Fly-Crash-Fix-Fly describe?
a. Traditional safety program
b. Military concept of loss management
c. Operational Risk Management
d. An airline
Answer:c. Operational Risk Management
Explanation:
The phrase "Fly-Crash-Fix-Fly" is often used to describe the concept of Operational Risk Management. It emphasizes the continuous cycle of identifying potential risks and hazards (Fly), analyzing and learning from past incidents and accidents (Crash), implementing corrective actions and preventive measures (Fix), and resuming normal operations with improved safety (Fly). This approach aims to proactively manage risks and enhance safety performance within an organization.
Implement the following Matlab code:
x=zeros(10,128);
t1=[0:1/128:1-1/128];
z=cos(2*pi*2*t1);
x(1,:)=z;
x=reshape(x,1,1280);
figure(1);
plot(x)
Examine Figure 1 – what does it “look like”? Zoom in. Take the FFT of x and explain what you see.
Manipulate the FFT and perform the IFFT to create a signal which is a continuous (i.e. no interpolating zeroes) sinusoid in the “time” domain. Explain the amplitude of the sinusoid.
The amplitude of the sinusoid is 28384 *x soít cos.
What is amplitude?Amplitude is defined as the greatest deviation from equilibrium of a point on a vibrating body or wave in terms of displacement or distance traveled. In most cases, amplitude is calculated by looking at a wave graph and determining the height of the wave from rest. The strength or intensity of the wave is gauged by its amplitude.
Sinusoid is defined as a signal with sine wave characteristics. In the liver, spleen, and bone marrow, sinusoids and irregular tubules transport blood in place of venules and capillaries. The sine or cosine functions from trigonometry form the foundation of sinusoidal signals, which are periodic functions.
Thus the amplitude of the sinusoid is 28384 *x soít cos.
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If 540 J of energy is absorbed by a resistor in 3.6 min, what is the power
delivered to the resistor in watts?
Power delivered to the resistor in watts is 2.5 watts
Given:
Energy absorbed by resistor = 540 J
Time taken by resistor = 3.6 min
Find:
Power delivered to the resistor in watts
Computation:
Time taken by resistor = 3.6 min
Time taken by resistor = 3.6 × 60
Time taken by resistor = 216 sec
We know that;
Energy = Power × Time
So,
540 = Power × 216
Power = 540 / 216
Power = 2.5 watts
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URGENT NEED HELP BY AN HOUR
C++ ONLY
Given a line of text as input: (1) output the number of characters excluding the three characters commonly used for end-of-sentence punctuation( period, exclamation point, and question mark), (2) then output the number of end-of-sentence punctuation characters that were found. You can just do (1) to pass the first few test cases for partial credit, then do (2) for full credit.
Ex: If the input is "Listen, Sam! Calm down. Please.", the output is:
28
3
Ex: If the input is "What time is it? Time to get a watch! O.K., bye now.", the output is:
43
5
Using the knowledge in computational language in python it is possible to write a code that output the number of characters excluding the three characters commonly used for end-of-sentence punctuation.
Writting the code:import re
def check_sentence(text):
result = re.search(r"^[A-Z][A-Za-z\s]*[\.\?!]$", text)
return result != None
print(check_sentence("Is this is a sentence?")) # True
print(check_sentence("is this is a sentence?")) # False
print(check_sentence("Hello")) # False
print(check_sentence("1-2-3-GO!")) # False
print(check_sentence("A star is born.")) # True
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