The given statement is True,
the earliest synthesizers were indeed monophonic instruments. Monophonic synthesizers can only produce one note at a time, which means they are limited to playing single melodies rather than chords. The first synthesizers, developed in the early 20th century, used analog technology to generate sound and were often quite large and complex.
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In which model of the system, the change in order is generated depending on the system activities. *
Static Model
Dynamic Model
Analytical Model
Numerical Model
Answer:
Static Model
Explanation:
What is the preferred development environment
Answer:The preferred development environment can vary depending on personal preferences, the type of project, and the programming language being used.
Explanation:
A conventional steering system has all of the following except
In order to fill a tank of 1000 liter volume to a pressure of 10 atm at 298K, an 11.5Kg of the gas is required. How many moles of the gas are present in the tank? What is the molecular weight of the gas? Assuming that the gas to be a pure element can you identify it?
Answer:
The molecular weight will be "28.12 g/mol".
Explanation:
The given values are:
Pressure,
P = 10 atm
= \(10\times 101325 \ Pa\)
= \(1013250 \ Pa\)
Temperature,
T = 298 K
Mass,
m = 11.5 Kg
Volume,
V = 1000 r
= \(1 \ m^3\)
R = 8.3145 J/mol K
Now,
By using the ideal gas law, we get
⇒ \(PV=nRT\)
o,
⇒ \(n=\frac{PV}{RT}\)
By substituting the values, we get
\(=\frac{1013250\times 1}{8.3145\times 298}\)
\(=408.94 \ moles\)
As we know,
⇒ \(Moles(n)=\frac{Mass(m)}{Molecular \ weight(MW)}\)
or,
⇒ \(MW=\frac{m}{n}\)
\(=\frac{11.5}{408.94}\)
\(=0.02812 \ Kg/mol\)
\(=28.12 \ g/mol\)
An automobile having a mass of 1100 kg initially moves along a level highway at 110 km/h relative to the highway. It then climbs a hill whose crest is 40 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/s2.
For the automobile, determine its change in kinetic energy and its change in potential energy, both in kJ.
Answer:
Change in kinetic energy=-513.652 KJ
Change in potential energy=431.64KJ
Explanation:
We are given that
Mass of an automobile , m=1100 kg
Initial speed, u=110 km/h=\(110\times \frac{5}{18}=30.56 m/s\)
Where \(1 km/h=5/18 m/s\)
Height , \(h_2=40 m\)
\(g=9.81 m/s^2\)
Final speed, v=0
Change in kinetic energy,\(\Delta K.E=\frac{1}{2}m(v^2-u^2)\)
\(\Delta K.E=\frac{1}{2}(1100)(0-(30.56)^2)=-513652.48 J\)
\(\Delta K.E=-\frac{513652.48}{1000}=-513.652 KJ\)
Where 1 KJ=1000 J
Change in potential energy,\(\Delta P.E=mgh(h_2-h_1)\)
Initially height, h1=0
Using the formula
\(\Delta P.E=1100\times 9.81(40-0)\)
\(\Delta P.E=431640J\)
\(\Delta P.E=431.64KJ\)
WHAT IS A TOROID IN HYDRAULUCS?
Answer:
A hydraulic actuator comprised of a toroidal piston within a toroidal enclosure, with differential fluid pressure alternatively applied to upper and lower surfaces of the piston to cause a reciprocating motion, and with plural double ended piston rods extending in parallel above and below the piston, and slidably extending in fluid sealed relation through end caps of the toroidal enclosure to distribute the vibrational force produced by the reciprocating piston over plural points of a surface area of the mass to be vibrated, thereby reducing the likelihood of stress, strain, or harmonics in the mass.
Answer:
Expl
A hydraulic actuator comprised of a toroidal piston within a toroidal enclosure, with differential fluid pressure alternatively applied to upper and lower surfaces of the piston to cause a reciprocating motion, and with plural double ended piston rods extending in parallel above and below the piston, and slidably extending in fluid sealed relation through end caps of the toroidal enclosure to distribute the vibrational force produced by the reciprocating piston over plural points of a surface area of the mass to be vibrated, thereby reducing the likelihood of stress, strain, or harmonics in the mass.anation:
What prevented this weld from becoming ropey?
A lower ampera
A higher voltage
The position of the weld
The stepping motion of the weld
Answer:
If I am not mistaken I believe it is a higher voltage.
Explanation:
Hope this helps
Equipment consisting of busbars mounted inside an enclosure that provides a means of tapping the service-entrance conductors is called a
Answer:
busway
Explanation:
If you measure the flow conditions (velocity, pressure, temperature) at a single point and conditions do not change over time, the flow is characterized as
Answer:
Steady flow
Explanation:
Flows in fluids can be categorized into different classes depending on the type of flow and the variations in their characteristics such as velocity, pressure, density, temperature, e.t.c
When these characteristics do not change when measured over time at a single point, then the flow is said to be steady. For a steady flow, the mathematical expression, amidst other conditions, is given as follows;
\(\frac{dV}{dt} = 0, \frac{dP}{dt} = 0, \frac{dT}{dt} = 0\)
Where;
V, P and T are the velocity, pressure and temperature of the fluid.
PS:
Other types of flows include:
i. Unsteady flow
ii. Laminar flow
iii. Turbulent flow
iv. Uniform flow
v Non-uniform flow
vi. Rotational flow
vii. Irrotational flow
Eugene runs a company that manufactures bricks. The manufacturing process consumes a lot of energy and causes pollution, which type of
bricks is his company manufacturing?
Answer:
D. Fire clay bricks
Explanation:
Just like in the steel mills with the big furnaces that's what causes all the smoke to come out of the stacks
Answer:
d is correct
Explanation:
11) A car manufacturer needs an alarm sound for certain undesirable conditions for the new car. The alarm should be activated when any of the following conditions is met: a) The headlights are on while ignition is off. b) The door is opened while the ignition is off. c) The seat belt is not used when the ignition is on. By using suitable logic gates, design the logic circuit of the alarm system showing all necessary steps. The input variables are as follows: Inputs S D I L Seat belt in use (Input S = 1) All doors are shut (Input D= = 0) Ignition is off (Input I = 1) Headlights are off (Input L = 0) Condition
how to draw logic gates, coding ,kmap and truth table
The fundamental components of any digital system are logic gates. It is an electronic circuit with one or more inputs and just one output.
What is logic gates ?In any digital system, logic gates serve as the fundamental building elements. One or more inputs may be present, but there is only one output in this electronic circuit. An established logic governs the relationship between the input and the output. This is the basis behind the names AND, OR, NOT, etc. given to logic gates.
Using cables that stand for 1s and 0s, we transmit data through computers. In order for computers to someday perform more difficult tasks like computing the 50th digit of, they need to be able to manipulate those 1s and 0s. Input wire 1s and 0s are converted via logic gates in computers.
A K-map is a particular type of truth table that facilitates the mapping of parameter values and leads to a shortened Boolean expression. Functions with two to four variables are ideal candidates for K-maps.
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Example 1.3 An electric circuit is supplied by a voltage represented by the expression v = 240 sin (471,239t) V. Calculate the following: a) The frequency of the supply voltage. the voltage
Answer: 75,000 Hz
Explanation:
To calculate the frequency of the supply voltage, we need to use the formula:
frequency = 1 / time period
where the time period is the time it takes for one complete cycle of the waveform. For a sine wave, the time period is given by:
time period = 2π / angular frequency
where the angular frequency is the rate of change of the angle with respect to time and is given by:
angular frequency = 2π × frequency
Comparing the given voltage expression v = 240 sin (471,239t) V to the general form of a sine wave:
v = Vm sin(ωt + θ)
where Vm is the amplitude, ω is the angular frequency, t is time, and θ is the phase angle, we can see that the amplitude is 240 V, the angular frequency is 471,239 rad/s, and there is no phase angle (θ = 0).
Using the formula for angular frequency, we can find the frequency:
angular frequency = 2π × frequency
471,239 = 2π × frequency
frequency = 471,239 / (2π) ≈ 75,000 Hz
Therefore, the frequency of the supply voltage is approximately 75,000 Hz.
Hope this helps, :^)
This is the inside of my motorcycle fuel tank what are those spots and should I be worried ?
(20%) machining appears to play an important role in the manufacturing of this phone housing, but machining is a relatively slow process. can you explain why machining was chosen instead of sheet-metal forming or casting alone? list the major considerations and compare among all these processes to justify your answer.
No raw material is wasted during the metal forming process, and the product has higher mechanical qualities and is produced more quickly.
By using a wedge-shaped tool, machining is the removal of material in the form of chips. Metal plates, tubes, or solid round bars make up the material that is machined. On the other hand, metal flat sheets make up the material that goes through the fabrication process. Metal is heated in a furnace until molten before being cast. The metal is poured into a die, or mold, while it is still liquid, giving the metal the shape of the component.
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All of the following statements with respect to manual transmission are true EXCEPT: Group of answer choices gears can be applied only when the clutch is depressed. when in gear, releasing the clutch connects the engine to the transmission. releasing the clutch pedal closes the contacts of the clutch safety switch. the transmission provides the best pulling power in the lowest gear.
All of the following statements with respect to manual transmission are true EXCEPT releasing the clutch pedal closes the contacts of the clutch safety switch.
What is the transmission?Manual automobiles are useful due to the fact they normally value much less and are extra fuel-efficient. You can also see decreased upkeep prices and coverage prices. They additionally provide you higher management of the car for the reason that driver, now no longer the car, is in fee of converting gears.
With the pedal totally released, there's complete touch between the engine and the driveshaft, through the take hold of the plate, because of this the engine can observe energy immediately to the driveshaft. However, it's miles feasible to have the take hold of plate partly engaged, permitting the take hold of to slip.
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how to find the roots of a polynomial of degree 3; finding zeros of a polynomial function; how to find the roots of a polynomial of degree 3 calculator; how to find zeros of a polynomial algebraically; zeros of polynomial functions examples with solutions; how to find the zeros of a polynomial function degree 3; finding zeros of a polynomial function calculator; how to find the zeros of a polynomial function degree 2
To find the roots of a polynomial of degree 3 we can use quadratic formula.
To find the roots of a polynomial function, also known as its zeros, you can use several methods. One method is to use the quadratic formula, which is a general formula that can be used to find the roots of a polynomial of degree 2 (quadratic).
If the polynomial is of degree 3 (cubic), you can use the cubic formula, which is a bit more complicated than the quadratic formula. The cubic formula is:
\(x = (-b + \sqrt{b^2 - 4ac)}/(2a) , (-b - \sqrt{b^2 - 4ac} )/(2a)\)
where a, b, and c are the coefficients of the polynomial in the form:
\(ax^3 + bx^2 + cx + d = 0\)
For example, if you have the polynomial \(x^3 - 7x^2 + 15x - 9 = 0\), then a=1, b=-7, c=15, and d=-9. Plugging these values into the cubic formula gives you:
\(x = (-(-7) + \sqrt{(-7)^2} - 4115))/(21) , (-(-7) - \sqrt{(-7)^2} - 4115))/(21)\)
which simplifies to:
\(x = (7 + \sqrt{(49 - 60)} /2 , (7 - \sqrt{(49 - 60} )/2\)
This gives you two solutions: x = 2 and x = -3.
If you don't want to use the cubic formula, you can also try factoring the polynomial into linear factors. For example, the polynomial \(x^3 - 7x^2 + 15x - 9\) can be factored as (x-1)(x-3)(x-3) = 0, which gives you the roots x=1, x=3, and x=3.
You can also use a graphing calculator or computer software to find the roots of a polynomial. Many of these tools will also give you the option to see the steps involved in finding the roots, which can be helpful for understanding the process.
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What is in a catalytic converter that makes it so expensive?.
Answer:
A catalytic converter is expensive because it needs rhodium to reduce smog levels. Rhodium, at its current value, is extremely expensive which makes using it in a catalytic converter expensive. To make up for their cost, manufacturers have to increase the price of the catalytic converter.
Explanation:
Do Digital SEP helps us reimagine outcome?
Yes, Digital SEP helps us to reimagine outcome.
What is a digital SEP?It is a one-of-a-kind solution that boosts process efficiency and employs digital technology through extensive data analysis and cross-functional benchmarking.
The strategy allows for the change to be developed and implemented in a realistic manner, as well as the reimagining of results.
It defines what the method is meant to achieve on a business level.
The importance of these outcomes is determined by their relevance to the client and the business context.
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One-tenth kmol of carbon monoxide (CO) in a piston-cylinder assembly undergoes a process from P1-150 kPa, T1-300 K to P2-500 kPa, T2-370 K. For the process, W--300 kJ. Employing the ideal gas model, determine a.) the heat transfer, in kJ, b.) the change in entropy, in kJ/K. c.) Show the process on a sketch of the T - s diagram.
Here are the answers to your questions:
a.) The heat transfer is -154 kJ.
b.) The change in entropy is 0.13 kJ/K.
c.) The process is shown on a sketch of the T-s diagram below.
How can this be explained?The heat transfer is negative because the gas does work on the surroundings.
The entropy change is positive because the gas is expanding and becoming less ordered. The T-s diagram shows that the process is irreversible
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Membrane compounds should not be applied to the base slab of a two-course floor
True
False
True, Hydrophobic and small polar molecules can diffuse through the lipid layer of the plasma membrane, but ions and large polar molecules cannot.
Describe the plasma membrane.
The outermost membrane or structure that encloses the cell and its organelles is called the plasma membrane. It resembles an envelope. Both bacterial and eukaryotic cells contain the double-membraned phospholipid bilayer organelle. All living cells have a barrier called the plasma membrane, which allows some molecules to enter and others to leave the cell.
Additionally, the plasma membrane acts as a connecting system by creating a connection between the cell .
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technician a says that hydrocracking is used mostly in the manufacture of diesel fuel. technician b says that thermal cracking produces a high-quality gasoline suitable for today's engines. which technician is correct?
A sidecut from the vacuum distillation column known as heavy vacuum gas oil is often subjected to hydrocracking, a second catalytic cracking operation.
The long chain hydrocarbon molecules in the oil are divided into smaller ones by a catalyst when it is combined with hydrogen and passes over it. The temperature and the presence of catalysts have a significant impact on the pace of cracking and the hydrocracking's final products. Hydrogen is utilized to break the C-S and C-N bonds in Hydrotreatment, a similar cracking process (previously discussed in Section 4.3); in Hydrocracking, the desired break is in the C-C bonds, and the main products are typically jet fuel and diesel. Therefore, hydrocracking is applied where there is a high demand for diesel fuel.
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The denity of a certain type of jet fuel i 775 kg/m3. Determine it pecific gravity and pecific weight
The correct answer is Specific weight: w = [weight ÷ volume] = [9N ÷ 0.001m³] = 9000N/m³Density: w = [ × g] Where, g = acceleration due to gravity = 9.81m/sec². Specific gravity: G = [density of liquid ÷ density of water] As you know, The density of water = 1000kg/m³.
The density of a substance is divided by the density of water at 4 degrees Celsius to determine its specific gravity. The density of the substance and the density of the water must be represented in the same units for the calculation.distinguishes While specific weight has dimensions, specific gravity is a dimensionless number. The gravitational field has no effect on a material's specific gravity, but it does have an effect on a material's specific weight. A substance's "Specific Gravity" is determined by dividing its mass by the mass of an equivalent volume of water at the same pressure and temperature.
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2. A collection of "free" electrons in one place creates a(n)
OA. magnetic field
OB. conductance
OC. electrostatic force
OD. inverse voltage
select the output generated by the following code: new_list = [10, 10, 20, 20, 30, 40] for i in range(3): print(new_list[i]) new_value = new_list.pop(0)
a.10
20
30
b.20
40
60
c.10
30
50
d.0
1
2
The output generated by the given code is: a. 10 20 30
How to check for the output generated by the code?The code initializes a list called new_list with six elements: [10, 10, 20, 20, 30, 40]. Then, it uses a for loop to iterate over the first three elements in the list, printing each element one by one.
The for loop iterates three times, as specified by range(3). In each iteration, the value of i increases from 0 to 2. Inside the loop, the print() function is used to print the element at the index i of new_list.
Here's the output of each iteration:
When i = 0, the first element of new_list (10) is printed.
When i = 1, the second element of new_list (10) is printed.
When i = 2, the third element of new_list (20) is printed.
Finally, the pop() function is used to remove and return the first element (at index 0) of new_list. The value is assigned to the variable new_value, which is not used in the code afterward.
The final output generated of new_list after using pop() is: [10, 20, 20, 30, 40].
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API 653 is intended to be used by owner/operator organizations that:
A) employ tank inspectors
B) have access to engineers & inspectors
C) have a quality control manual
D) have both inspection and repair orgnizations
API 653 is intended to be used by owner/operator organizations that have both inspection and repair organizations.
These organizations should have access to engineers and inspectors, employ tank inspectors, and have a quality control manual in place. The API 653 standard provides guidance on the inspection, repair, alteration, and reconstruction of aboveground storage tanks (ASTs) used in the petroleum and chemical industries. Compliance with this standard helps ensure that ASTs are maintained in a safe and reliable condition.
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What car is this? I thinks its a nissan 240sx but i dont know
Answer:
your right I had to look a little bit but you are correct
(5 points) Which of the following circuits may not be used to determine the value of the resistor? Circle all that apply.
The circuit that may not be used to determine the value of the resistor is (Option A). See the attached image.
What is a resistor?
A resistor is a component of an electronic circuit that restricts or regulates the passage of electrical current.
Resistors can also be used to supply a fixed voltage to an active device such as a transistor.
What is the purpose of a resistor?A resistor is a two-terminal electrical component that offers resistance to current flow. Resistors are commonly employed in electrical circuits to reduce current flow, split voltages, impede transmission signals, and bias active parts.
What is a circuit?
Individual electronic components such as resistors, transistors, capacitors, inductors, and diodes are linked by electrical wires or traces through which electric current can pass to form an electronic circuit.
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5 measurements per decade for frequencies between 1 khz and 100 khz. what frequenices values should be chosen
If you want to take 5 measurements per decade for frequencies between 1 kHz and 100 kHz, then the following frequencies should be chosen: 1 kHz, 10 kHz, 100 kHz, 1 MHz, and 10 MHz.
Taking multiple measurements per decade in the frequency range from 1 kHz to 100 kHz can be done in order to gain a better understanding of the behavior of a signal in a given frequency range. By taking multiple measurements, you can gain insight into the signal's spectral characteristics such as its frequency content, spectral magnitude, and spectral phase.
Additionally, taking multiple measurements per decade can provide more precise information about the signal's power spectral density, and is often used in applications such as signal processing and communications to accurately measure system performance.
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a technician is being asked to move a heavy industrial printer. which safety technique is recommended for this situation?
The safety technique that is recommended for this situation of moving a heavy industrial printer is to Bend at the knees when lifting.
What is a Safety Procedure?This refers to the process of executing a task in a safe and acceptable way that does not put the user or others at risk
Hence, we can see that The safety technique that is recommended for this situation of moving a heavy industrial printer is to Bend at the knees when lifting.
This is to ensure that the person doing the lifting does not injure himself and has the proper form when lifting.
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How to Find The Suitable Size of Cable & Wire?
You can use a cable size chart or calculator to determine the suitable size of cable or wire for your application.
To find the suitable size of cable and wire, you need to consider several factors such as the load current, voltage drop, temperature rating, and environmental conditions. Here are the steps you can follow to determine the appropriate size of cable and wire:
1. Determine the load current: The first step is to calculate the load current by dividing the power (in watts) by the voltage (in volts).
2. Calculate the voltage drop: The next step is to calculate the voltage drop across the cable or wire. This can be done using the formula: VD = (2 x L x I x R) / 1000, where VD is the voltage drop, L is the length of the cable or wire in meters, I is the load current in amps, and R is the resistance of the cable or wire in ohms per meter.
3. Select the temperature rating: The temperature rating of the cable or wire is another important factor to consider. This rating indicates the maximum temperature that the cable or wire can withstand without damaging its insulation.
4. Consider the environmental conditions: The last factor to consider is the environmental conditions in which the cable or wire will be used. This includes factors such as humidity, temperature, and exposure to chemicals.
Once you have considered all of these factors, you can use a cable size chart or calculator to determine the suitable size of cable or wire for your application.
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