Genetically engineered organisms represent the highest percentage of corn grown in the United States are Soybeans, cotton, and canola. Well they are also significantly genetically engineered crops.
Genetically engineered (GE) organisms, or genetically modified organisms (GMOs), are organisms whose genetic material has been altered through biotechnology. In the United States, the most prevalent GE crop is corn, with approximately 92% of corn being genetically engineered as of 2020.
This is followed by soybeans, cotton, and canola, with 94%, 94%, and 90% GE rates, respectively. GE crops are popular due to their increased resistance to pests, herbicides, and environmental conditions, as well as their ability to produce higher yields. These factors contribute to the widespread adoption of genetically engineered crops in the United States.
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The three legs of a BJT (Bipolar Junction Transistor) are called the collector, base, and emitter.
a. True
b. False
in academic writing, we discuss literature in present tense.
true
false
In academic writing, we discuss literature in the present tense is a True statement.
In academic writing, it is common to discuss literature in the present tense. This is because literature is a timeless piece of art that continues to exist in the present. When discussing literature in academic writing, it is customary to use the present tense, known as the "literary present."
This is because the ideas, characters, and events in the work are considered to be continually present, allowing readers to experience the text as if it is happening now. Using the present tense helps maintain consistency and engage readers, regardless of when the work was written or published. The literary present is not only limited to literature but also used when discussing other forms of art such as paintings and films.
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En las zonas rurales el agua se extrae del subsuelo por medio de bombas, considere una fuente de agua subterránea cuya superficie está 60 m debajo del nivel del suelo. El agua se va elevar 5 m encima del nivel del suelo mediante una bomba y se tiene los siguientes datos:
Entrada Salida
Velocidad (m/s) 0. 637 0. 283
Entalpía (kJ/kg) 102. 5 152. 6
Flujo de masa (kg/s) 5 5
Gravedad es 9. 8 m/s2
Si el calor es despreciable. ¿Cuál es la potencia de la bomba (kJ/s)?
The necessary power of the pump for a steady flow of water at the rate of 15 Liters/second in kW is a) 9.54
How to calculate the powerFrom the information, in rural areas the water is extracted from the subsoil by means of pumps, consider an underground water source whose surface is 60 m below ground level. The water will be raised 5 m above the ground level by means of a pump.
The necessary power of the pump for a steady flow of water at the rate of 15 Liters/second in kW is:
= 636188 26 × 0.015
= 9.54kw
In conclusion, the power of the pump for a steady flow of water is 9.54kw.
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6-16. use d-type flip-flops and gates to design a counter with the following repeated binary sequence: 0, 2, 1, 3, 4, 6, 5, 7
The truth table for the circuit is given below:
The truth table for the combinational circuit:A B C Q2 Q1 Q0
0 0 0 0 0 1
0 0 1 0 1 0
0 1 0 1 0 1
0 1 1 1 1 1
1 0 0 0 1 0
1 0 1 1 0 1
1 1 0 1 1 0
1 1 1 1 1 1
Initially, Q2, Q1 and Q0 are all set to 0 which signifies the first row of the flip-flops.
In order to load values into these individual flip-flops for each clock pulse, one must refer to the next rows in the sequence. As an example, if a current state of 001 is detected from the flip-flops, then the combinational circuit is signaled to output 010 immediately before loading this value on the subsequent clock pulse.
To produce the desired result, one would need the assistance of the following logic gates:
A NOT gate assigned to each input bit (A, B, and C)
Two separate AND gates allocated towards both output bits (Q2, Q1, and Q0)
An additional pair of OR gates molded to combine the AND gate's output for modulating each respective output bit.
The counter is composed of three D-type flip-flops and a combinational circuit consisting of NOT, AND, and OR gates.
The combinational circuit generates the next state of the flip-flops based on their current state and the desired sequence of values. On each clock pulse, the current state of the flip-flops is replaced with the next state generated by the combinational circuit, resulting in the desired repeated binary sequence.
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A major portion of the energy consumption in households can be attributed to home heating and cooling systems.a. trueb. false
The answer is a. true. A significant amount of energy consumption in households is due to heating and cooling systems, especially in regions with extreme temperatures.
Homeowners can take steps to improve the energy efficiency of their homes and reduce their energy consumption by ensuring proper insulation, using programmable thermostats, and choosing energy-efficient HVAC systems. However, even with these measures, heating and cooling will likely remain a major contributor to household energy consumption.
Thus, a major portion of the energy consumption in households can be attributed to home heating and cooling systems. the answer: a. True.
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A net torque applied to a rigid object always tends to produce:
a) Linear acceleration.
b) Rotational equilibrium.
c) Angular Acceleration.
d) Rotational inertia.
e) None of these.
The correct option is c) Angular Acceleration. This is the rate of change of angular velocity over time and results in a rotational motion. This means that the net torque applied to a rigid object will cause it to accelerate in a rotational motion.
In more detail, when a net torque is applied to a rigid object, it causes the object to undergo angular acceleration. Torque is the rotational equivalent of force and is a product of the force applied and the perpendicular distance from the axis of rotation to the point where the force is applied.
It is important to note that if the net torque is zero, the object will be in rotational equilibrium, meaning its angular velocity will remain constant.
Therefore, the correct option is c) Angular Acceleration.
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for about two decades, 10% of all u.s. electricity came from which source? the hoover dam soviet warheads niagara falls . new york landfill gas
For about two decades, 10% of all U.S. electricity came from the source: Soviet warheads.
This source refers to the use of decommissioned nuclear warheads from the Soviet Union, which were converted into fuel for nuclear power plants in the United States.
This process was part of a program called Megatons to Megawatts, where the U.S. purchased low-enriched uranium from Russia, derived from dismantled Soviet nuclear warheads.
This program lasted from 1993 to 2013 and played a significant role in U.S. energy production, while simultaneously reducing the number of nuclear weapons worldwide.
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The bombe was an electromechanical device used by British cryptologists to help decrypt German
Enigma-machine-encrypted signals during World War II. Who developed the bombe?
a. Alan Turing
b. John von Neumann
c. Marian Rejewski
d. J. Robert Oppenheimer
The correct answer is option a. Alan Turing
Alan Turing, a British mathematician and computer scientist, developed the bombe. He built upon the earlier work of Polish cryptanalyst Marian Rejewski, who had created a device called the "Bomba." Turing's bombe was an improved and more efficient version of Rejewski's invention. It significantly contributed to breaking the Enigma code, which was crucial in gaining an advantage over the Axis powers during World War II. Although other individuals, such as John von Neumann and J. Robert Oppenheimer, made significant contributions to computing and science during this time, it was Turing who was directly responsible for the development of the bombe.
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which method will prevent backflow into the drinkable water supply
Installing a backflow prevention device is the method that will prevent backflow into the drinkable water supply.
A backflow preventer is a mechanical device installed in a plumbing system to prevent contaminated water from flowing back into the clean, drinkable water supply. It ensures that water flows in only one direction, maintaining the safety and quality of the potable water supply.
Backflow preventers can be found in various types, such as reduced pressure zone devices, double check valves, or atmospheric vacuum breakers. They are essential in protecting public health by preventing pollutants and contaminants from entering the water supply through cross-connections or back-siphonage. Regular inspection and maintenance of these devices are crucial to ensure their effectiveness.
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IDE is an acronym for Internal Development Environment.
a. True
b. False
The correct answer is b. False.
IDE is an acronym for Integrated Development Environment.
IDE stands for Integrated Development Environment, which is a software application that provides comprehensive facilities to computer programmers for software development. It typically includes a source code editor, a compiler or interpreter, build automation tools, and debugging and profiling capabilities. An IDE is not limited to internal development but can also be used for external development projects. Some popular IDEs include Visual Studio, Eclipse, and IntelliJ IDEA.
In summary, IDE stands for Integrated Development Environment, which is a software tool that supports software development activities.
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in which situations can the speed adjust by route function of propilot assist with navi-link automatically reduce vehicle speed?
The speed adjust by route function of propilot assists with navi-link automatically reducing vehicle speed ensuring a safe and comfortable driving experience for the driver and passengers.
The Speed Adjust by Route function of ProPILOT Assist with Navi-Link can automatically reduce the vehicle speed in several situations. Firstly, when the system detects a sharp turn or curve in the road, it will slow down the car to navigate the turn safely. Secondly, when approaching a highway exit, the system will automatically reduce the speed to smoothly transition to the off-ramp. Thirdly, when approaching a toll booth or a border checkpoint, the system will slow down to ensure a smooth stop at the checkpoint.
Additionally, the Speed Adjust by Route function can also reduce vehicle speed when approaching a construction zone or a roadwork site, where reduced speed limits are often in place. The system will automatically detect the reduced speed limit signs and slow down the car accordingly.
Furthermore, the system can also adjust the speed based on traffic conditions. If the car is following another vehicle too closely, the system will automatically slow down to maintain a safe following distance. Similarly, if traffic is congested or slowed down ahead, the system will slow down the car to avoid collisions and ensure a safe driving experience.
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where are sensors located on a vehicle equipped with side sonar system?
Sensors in a vehicle with a side sonar system are typically located on the side bumpers or door panels. They are evenly distributed along the length of the vehicle for effective detection.
A side sonar system in a vehicle is designed to detect obstacles and other objects near the sides of the car during maneuvers such as parking or changing lanes. To ensure comprehensive coverage, multiple sensors are embedded along the side bumpers or door panels.
These sensors emit ultrasonic waves that bounce off nearby objects and return to the sensors, allowing the system to calculate the distance to the detected object. This information is then relayed to the driver through visual or auditory cues, helping them make safe driving decisions. The precise location of sensors may vary depending on the vehicle make and model.
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The Critical Path Method does not assume activity path durations are fixed.
a. True
b. False
The statement "The Critical Path Method does not assume activity path durations are fixed" is true.
The Critical Path Method (CPM) is a project management technique that uses a network diagram to identify the critical path, which is the sequence of tasks that must be completed on time to ensure the project is completed on schedule. In CPM, activity durations are estimated based on historical data, expert judgment, or other factors, and these estimates are not assumed to be fixed. Instead, they are updated as more information becomes available, and the project schedule is adjusted accordingly.
This flexibility is one of the strengths of CPM, as it allows for adjustments to be made in real-time, based on changing circumstances.
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for about two decades, 10% of all u.s. electricity came from which source? the hoover dam
For about two decades, 10% of all U.S. electricity came from the Hoover Dam.
The Hoover Dam, constructed between 1931 and 1936, is a large hydroelectric power plant located on the border of Arizona and Nevada. It harnesses the power of the Colorado River to generate electricity. For about 20 years after its completion, the dam provided approximately 10% of the United States' electricity supply.
The dam's hydroelectric power has significantly contributed to the energy needs of the surrounding areas and played a crucial role in the growth and development of the American Southwest. Today, while the Hoover Dam still generates electricity, its contribution to the overall U.S. power supply is much smaller due to increased demand and the growth of alternative energy sources.
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The Wankel engine is a type of internal combustion engine which uses a rotary design to convert
pressure into a rotating motion instead of using reciprocating pistons. It was invented by Felix
Wankel in
a. 1954
b. 1972
c. 1936
d. 1948
Wankel engine was invented by Felix Wankel in 1954.
The Wankel engine is a unique type of internal combustion engine that utilizes a rotary design. Unlike traditional engines that use reciprocating pistons to convert pressure into a rotating motion, the Wankel engine achieves this by utilizing a rotor with an epitrochoidal shape that rotates inside an oval-shaped housing.
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The Wankel engine was invented by Felix Wankel in a. 1954.
The Wankel engine, a type of internal combustion engine, features a unique rotary design that turns pressure into rotating motion, as opposed to reciprocating pistons found in traditional engines.
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USB' is an acronym for a type of connector. What does 'USB' mean?
a.Universal Standard Bus
b. Unified Serial Bus
c. No Such Bus
d. Universal Serial Bus
e. Universally Sequential Bus
The correct answer is d. Universal Serial Bus.
The acronym 'USB' stands for Universal Serial Bus.
USB (Universal Serial Bus) is a standard type of connector used to connect various electronic devices for data transfer and communication. It was developed to simplify and standardize the connection of peripherals, such as keyboards, mice, printers, and external storage devices, to computers. USB connectors have become widely adopted due to their ease of use, plug-and-play functionality, and ability to provide power to connected devices. There are multiple versions of USB, such as USB 1.1, 2.0, 3.0, and 3.1, with each version offering improved data transfer speeds and capabilities. Additionally, there are various types of USB connectors, such as Type-A, Type-B, and Type-C, to cater to different devices and applications.
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what component of a disk tells the os how the disk is partitioned?
The partition table is the component of a disk that tells the operating system (OS) how the disk is partitioned.
The partition table is a table located at the beginning of a hard disk or other data storage device that contains information about the partitions or sections of the disk. It includes details about the size, location, and type of each partition, as well as other data such as boot loader code.
When the OS reads the partition table, it can determine how the disk is partitioned and use that information to access and manage the data on the disk. The partition table is an important part of disk management and allows users to organize and use their data efficiently.
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what happens to the beeping sound made by the sonar system when the vehicle gets closer to an obstacle?
When a vehicle equipped with a sonar system gets closer to an obstacle, the beeping sound produced by the system becomes more frequent.
The beeping sound made by the sonar system will typically become louder and more frequent as the vehicle gets closer to an obstacle. This is because the sonar system is designed to emit sound waves that bounce off objects and return to the system, providing information about the distance and location of the obstacle. As the vehicle moves closer to the obstacle, the sound waves bounce back more quickly, causing the system to detect the obstacle more frequently and emit a louder warning signal to the driver. It is important for drivers to pay attention to these warning signals and take appropriate action to avoid collisions with obstacles.
This change in beeping frequency helps the driver to determine the proximity to the obstacle and react accordingly to avoid a collision.
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FET is an acronym for Field Effect Transistor.
a. True
b. False
Note that it is TRUE to state that FET is an acronym for Field Effect Transistor.
What is a Field Effect Transistor?
In the world of Electrical Electonics, FET or Field Effect Transistor is a kind of transistor that can be used to manage the rate of the flow of electrical current.
The FET comprises of a channel of semiconductor materials.
This semiconductor has two terminals whch is known as the source and the drain. In the architecture of FET, you also have another part called the gate. This gate works by creating an electric field that controls the conductivity of the channel.
Hence it is correct to state that FET is an acronym for Field Effect Transistor.
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I need help figuring out 50 x 305982 x 57 to cut the wood for school project
For your school project, you will need around 875,951,100 cubic units of wood.
How to determine size of wood?To determine the size of wood, you need to measure its dimensions. The dimensions of wood are typically expressed as thickness (T), width (W), and length (L).
To find the volume of the wood you need, you can multiply the three dimensions together:
50 x 305982 x 57 = 875951100
So the volume of the wood needed for your school project is approximately 875,951,100 cubic units (depending on the units used for the measurements).
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an ideal gas at high pressure expands through an adiabatic turbine to a lower pressure in a steady-state, steady-flow process. does the entropy of the gas always increase for an irreversible process (yes or no)?
The relationship between entropy and energy in an irreversible process of a gas expanding is that as the gas expands, some energy is lost as heat to the surroundings and cannot be recovered.
What is the relationship between entropy and energy in an irreversible process of a gas expanding?Yes, the entropy of the gas always increases for an irreversible process. This is due to the fact that during the expansion process, some energy is lost as heat to the surroundings, which cannot be recovered.
This leads to an increase in the randomness and disorder of the system, which is reflected by an increase in entropy.Entropy is a measure of the degree of randomness or disorder in a system.
In the case of a gas undergoing an irreversible expansion process, the system loses some energy as heat to the surroundings.
This energy cannot be recovered, and as a result, the randomness and disorder of the system increase. The increase in randomness and disorder is reflected by an increase in the system's entropy.
This is a natural consequence of the second law of thermodynamics, which states that the total entropy of an isolated system always increases over time.
Thus, irreversible processes always result in an increase in entropy, and the irreversible expansion of a gas is no exception.
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Draw the given block in first angle orthographic projection looking in the direction of arrow X as the front elevation
The steps to use in order to draw a block in first-angle orthographic projection is given below:
How to draw a block in first-angle orthographic projectionTo devise a first-angle orthographic projection of a block, abide by the following steps:
Commence with constructing the top view of the block. This will expose the topmost section of the block as viewed from directly above. Depict the top view with an even horizontal line demonstrating the length of the block, and vertical lines that stretch downwards representing the width of the block.
Proceed to sketch the front view of the block. This will show the frontal area of the block as seen when facing it head-on. Draw the front view with a vertical line symbolizing the height of the block, similarly complemented by two clear horizontal lines pulling outwards illustrating the width of the block.
Subsequently, from the right-side view of the block. This will reveal the outer part of the block as it appears from the right side. Design the right-side view with a vertical line signifying its height, alongside one flat horizontal line edging a trace to the left explaining the length of the block.
Lastly, link up the corresponding points between the various views of the block. For instance, create the top surface of the block by connecting the top-right nook of the front view to the top-left corner of the right-side view. Repeat this action for every single side of the block until all persisting surfaces have been interlinked.
Ensure that any connecting lines are in parallel and accurately identical lengths to authenticate the orthographic projection.
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What is the term for a class of decision making shortcuts that we build from learning and experience in the world? a.Heuristics b.Mental maps c.Schemas d.Biases
The correct option for a class of decision-making shortcuts built from learning and experience in the world is a. Heuristics. Heuristics are mental shortcuts that help us make decisions quickly and efficiently.
Heuristics are cognitive strategies that simplify complex decision-making processes by using shortcuts based on previous experiences, knowledge, or patterns we have observed. These shortcuts allow us to quickly make decisions in various situations without having to analyze all the available information thoroughly.
While heuristics can be helpful in many cases, they can also lead to biases and errors in judgment. It's important to recognize when using heuristics might be appropriate and when more careful analysis is needed.
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Question 1
a) In Matlab, read the following sentence and record your own voice for 4 seconds at a rate
40 kHz and generate a “message.wav” file.
“Use a pencil to write the first draft.”
b) Downsample your message signal at a sampling rate 8 kHz, show the original signal and
its discrete time samples for a very short period of time.
c) Using Spectrum Analyzer, show the two sided spectrum of the original signal and the
sampled signal.
d) Define a low pass filter with suitable cutoff frequencies to recover the original low pass
filter from its discrete time samples. Listen the original message signal and recovered
message signal at 40 kHz and comment on your results.
e) Repeat the above steps for the new sampling rate 4 kHz. What happens at 4 kHz?
Comment on your results.
Question 2
a) In Matlab, read the following sentences and record your own voice for 4 seconds at a
rate 40 kHz and generate “message1.wav” and “message2.wav” files.
“The two met while playing on the sand.”
“This is a grand season for hikes on the road.”
b) In Matlab, implement an analog QAM modulator with carrier frequency 8 kHz. Show the
two sided QAM spectrum using Spectrum Analyzer.
c) Add Gaussian channel noise whose power is 1 micro Watts.
d) Implement QAM demodulator and recover message 1 and message 2. Listen the original
message signals and recovered message signals and comment on your results.
e) Repeat the above steps with channel noise whose power is 1 milliWatts. Comment on
your results.
Question 3
In this question, you are NOT allowed to use “ssbmod” and “ssbdemod” functions.
a) In Matlab, read the following sentence and record your own voice for 4 seconds at a rate
40 kHz and generate “message.wav” file,
“We find joy in the simplest things. “
b) In Matlab, implement an USB modulator with carrier frequency 8 kHz. Show the two
sided USB spectrum and DSB spectrum using Spectrum Analyzer.
c) Add Gaussian channel noise whose power is 1 micro Watts.
d) Implement USB/LSB demodulators and recover the message. Listen the original message
signals and recovered message signals and comment on your results.
e) Repeat the above steps with channel noise whose power is 1 milliWatts. Comment on
your results.
a) To record a voice message in Matlab, you can use the "audiorecorder" function. The code for recording the message for 4 seconds at a rate of 40 kHz and saving it as a "message.wav" file would be:
recObj = audiorecorder(40000, 16, 1);
disp('Start speaking.')
recordblocking(recObj, 4);
disp('End of Recording.');
message = getaudiodata(recObj);
audiowrite('message.wav', message, 40000);
b) To downsample the message signal at a sampling rate of 8 kHz, we can use the "resample" function. The code for showing the original signal and its discrete time samples for a short period of time would be:
t = 0:1/40000:0.001;
t_ds = 0:1/8000:0.001;
message_ds = resample(message, 1, 5);
plot(t, message, 'b', t_ds, message_ds(1:length(t_ds)), 'r*');
xlabel('Time (s)');
ylabel('Amplitude');
legend('Original signal', 'Discrete time samples');
c) To show the two-sided spectrum of the original and sampled signal, we can use the "fft" function. The code would be:
N = length(message);
N_ds = length(message_ds);
f = (-N/2:N/2-1)(40000/N);
f_ds = (-N_ds/2:N_ds/2-1)(8000/N_ds);
spectrum = abs(fftshift(fft(message)));
spectrum_ds = abs(fftshift(fft(message_ds)));
plot(f, spectrum, 'b', f_ds, spectrum_ds, 'r');
xlabel('Frequency (Hz)');
ylabel('Magnitude');
legend('Original signal', 'Sampled signal');
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Nitrogen is compressed from 100 kPa and 20oC to 600 kPa in a cylinder using a polytropic process with n= 1. 3. Assuming the kinetic and potential energy changes to be negligible, determine the following. (Take R = 0. 2968 kJ/kg-K and cv = 0. 744 kJ/kg-K for the N2)The boundary work during this process is -
122. 7
kJ/kg. Type your choice in the blank: 101. 4 111. 5 122. 7 134. 9 148. 4
The temperature at the final state is
C. Type your choice in the blank: 161. 9 170. 0 178. 5 187. 5 196. 8
The internal energy change during this process is
kJ/kg. Type your choice in the blank: 111. 6 122. 8 135. 1 148. 6 163. 4
The heat transferred during this process is -
kJ/kg. Type your choice in the blank: 33. 5 36. 8 40. 5 44. 5 49
Given:
P1 = 100 kPa, T1 = 20°CP2 = 600 kPan = 1.3R = 0.2968 kJ/kg-K, cv = 0.744 kJ/kg-KWe can use the following equations to solve for the required values:
Work done during a polytropic process:
W = (P2V2 - P1V1)/(1 - n)
Ratio of specific heats:
γ = cp/cv = 1 + 2/ν
Temperature change during a polytropic process:
(T2/T1) = (P2/P1)^((γ-1)/γn)
Change in internal energy during a polytropic process:
Δu = cv(T2 - T1)
Heat transferred during a polytropic process:
Q = Δu + W
where V1, V2, cp, and ν are specific volume, specific heat at constant pressure, and the number of moles of gas respectively.
Work done during the process is given as
V1 = R T1/ P1 = 0.5919 m³/kg
V2 = (P2/P1)^(-1/n)V1 =
0.1397 m³/kg
W = (P2V2 - P1V1)/(1 - n)
= 122.7 kJ/kg
Answer: 122.7 kJ/kg
Final temperature:
γ = cp/cv = 1 + 2/ν
ν = R/cv = 0.3984 kg/mol
γ = 1 + 2/0.3984 = 6.019
(T2/T1) = (P2/P1)^((γ-1)/γn) = 4.459
T2 = (T1 x (P2/P1)^((γ-1)/γn)) = 196.8°C
Answer: 196.8°C
Change in internal energy:
Δu = cv(T2 - T1) = 135.1 kJ/kg
Answer: 135.1 kJ/kg
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Draw state diagram of the control software for a DVD player
Explanation:
this is the diagram of the control software for a DVD player
Explain how the mass and size of the third marble should compare to the masses and sizes of the ceramic and steel marbles. Explain the reasoning for your answer.
The mass as well as the size of the third marble is one that should be the same as the masses and sizes of the ceramic as well as steel marbles.
What is the reasoning about?The above is so due to the fact that the principle of conservation of energy is one that is used in this situation, which in turn implies that the total energy of the system (that is the marbles and the track) is still the same or constant.
Therefore, based on the above the kinetic energy of the marbles prior to the collision need to be the same to the kinetic energy of the marbles that is after the collision.
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The consolidation of the Thomson-Houston Electric Company and the Edison General Electric
Company of Schenectady in 1895 created the
a. Western Electric Manufacturing Company
b. United States Electric Company
c. Buffalo General Electric Company
d. General Electric Company
The consolidation of the Thomson-Houston Electric Company and the Edison General Electric Company of Schenectady in 1895 created the:
d. General Electric Company
This merger combined the two companies' resources and expertise, leading to the formation of a major player in the electrical industry.
The Thomson-Houston Electric Company and the Schenectady-based Edison General Electric Company dominated the electrical business in the late 19th century.
Two of the most well-known inventors of the era, Thomas Edison and Elihu Thomson, started these businesses.
To market their goods abroad, the two businesses merged to become the General Electric Company in 1892.
The resources and electrical industry knowledge of Thomson-Houston and Edison General Electric were combined after the two businesses merged.
The General Electric Company is a worldwide business with operations in many different sectors today, including renewable energy, aviation, and healthcare.
However, Thomson-Houston and Edison General Electric's merger in 1895 is where the electrical industry's foundations may be found.
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Reverse engineering is the process of discovering the technological principles of a device, object, or system through analysis of its structure, function, and operation.
a. True
b. False
The statement that "reverse engineering is the process of discovering the technological principles of a device, object, or system through analysis of its structure, function, and operation" is true.
Reverse engineering is indeed the process of analyzing a device, object, or system in order to understand its technological principles. This involves examining its structure, function, and operation to determine how it works.
Reverse engineering is often used in industries such as manufacturing, software development, and automotive engineering. It allows engineers and designers to gain a deeper understanding of existing products or systems, which can then be used to improve upon or replicate them. By analyzing the inner workings of a product, designers can learn about its strengths and weaknesses and make changes to enhance its performance. Reverse engineering can also be used to create interoperable products that are compatible with existing systems. It is an important tool in many industries, and its use can lead to significant improvements in product design and performance.To know more about reverse engineering visit:
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The given statement "reverse engineering is the process of discovering the technological principles of a device, object, or system through analysis of its structure, function, and operation" is true. Reverse engineering is a legitimate and valuable process that can help in understanding and improving upon existing technologies.
Reverse engineering is essentially the opposite of traditional engineering, which involves building something from scratch. It involves taking an existing product or system and analyzing its components and processes to understand how it was made and how it functions.
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Conveyor-belt assembly for automobile production begins. It includes continuous-feed plate glass
and high-speed metalwork. What year was this?
a. 1908
b. 1898
c. 1915
d. 1932
The answer is c. 1915.
The conveyor-belt assembly for automobile production, which includes continuous-feed plate glass and high-speed metalwork, began in 1915.
Henry Ford developed the conveyor-belt assembly for car manufacturing in 1915, which featured high-speed metalwork and continuous-feed plate glass.
The assembly line was a ground-breaking manufacturing technique that significantly improved production effectiveness and cut expenses, lowering the price of cars for the general public.
These developments made it possible for the production process to be highly automated, thus boosting productivity and cutting costs.
The usage of the assembly line had a significant impact on production in general and revolutionised the automobile industry.
It opened the door for the creation of other mass production methods and brought about considerable advancements in productivity, quality, and price.
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