Answer:
commercial freezing
Explanation:
smaller ice crystals are formed this causes less damage to cell membranes so the quality is less effected
3. In Question 2, taking actual 2009 sales of $48,000 as the forecast for 2010, what sales would you forecast for 2011, 2012 and 2013 using exponential smoothing and a weigh α based on actual values of (a) 0.4; (b) 0.8?
Using α = 0.4, the forecasted sales for 2011, 2012, and 2013 would all be $48,000, which is the same as the actual sales in 2009.
Using α = 0.8, the forecasted sales for 2011, 2012, and 2013 would also be $48,000.
In both cases, the forecasts for 2011, 2012, and 2013 remain the same as the actual sales in 2009 due to the zero difference between the actual and forecasted sales values.
To forecast sales for 2011, 2012, and 2013 using exponential smoothing, we need to apply the formula:
Forecast for the next period = Previous period's forecast + α * (Actual value - Previous period's forecast)
Given that the actual 2009 sales are $48,000 and are considered the forecast for 2010, we can calculate the forecasts for subsequent years using different values of α.
(a) For α = 0.4:
- Forecast for 2011 = $48,000 + 0.4 * ($48,000 - $48,000) = $48,000
- Forecast for 2012 = $48,000 + 0.4 * ($48,000 - $48,000) = $48,000
- Forecast for 2013 = $48,000 + 0.4 * ($48,000 - $48,000) = $48,000
Using α = 0.4, the forecasted sales for 2011, 2012, and 2013 would all be $48,000, which is the same as the actual sales in 2009.
(b) For α = 0.8:
- Forecast for 2011 = $48,000 + 0.8 * ($48,000 - $48,000) = $48,000
- Forecast for 2012 = $48,000 + 0.8 * ($48,000 - $48,000) = $48,000
- Forecast for 2013 = $48,000 + 0.8 * ($48,000 - $48,000) = $48,000
Using α = 0.8, the forecasted sales for 2011, 2012, and 2013 would also be $48,000.
In both cases, the forecasts for 2011, 2012, and 2013 remain the same as the actual sales in 2009 due to the zero difference between the actual and forecasted sales values.
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Please help I need it by today!!!
What if engineering disappeared for a day?
What is one way engineers Improve your life?
Answer:
if engineering disappeared for a day i would be at a loss. i wouldnt know what to do with myself considering engineering is my life. one way that engineers improve my life is they help me to understand enything end everything
Explanation:
. Assuming an n-type transistor with Vds of 1.8V and Vt of 0.7V, find the ranges of Vgs to put the transistor in cutoff, linear, and saturation regions.
Answer:
1. Cut off region: Vgs < 0.7 volts
2. Linear region: Vgs > 2.5
3. Saturation region: 0.7 < Vgs < 2.5
Explanation:
This question has provided us with these details
Vds = 1.8V
Vt = 0.7V
1. To get The cutoff region
Vgs < Vt
Such that when we put in the value, we have:
Vgs < 0.7 volts
This gives us the cut off region
2. The we get the Linear region using this formula:
Vds < Vgs - Vt
After we put in the values;
1.8V < Vgs - 0.7V
Such that
1.8V + 0.7V < Vgs
2.5V < Vgs
This is therefore the linear region of the transistor when Vgs > 2.5 volts
3. We get The saturation region using
Vgs < Vt and
Vds > Vgs - Vt
When we put in the values we have:
Vgs < 0.7V and
1.8V > Vgs - 0.7V
1.8V+0.7V > Vgs
2.5V > Vgs
Then our saturation region would be
0.7V < Vgs < 2.5 V
Tim built a shed onto his barn with a 1:3 slope on the roof. At what angle does the roof rise?
The roof of Tim's shed, which was built onto his barn, rises at an angle of approximately 18.4 degrees.
A 1:3 slope ratio means that for every 1 unit of horizontal distance, the roof rises by 3 units vertically. To find the angle at which the roof rises, we can use the inverse tangent function (arctan) with the slope ratio. In this case, the arctan of 1/3 is approximately 18.4 degrees. This means that for every unit of horizontal distance, the roof rises by approximately 0.314 units vertically. The angle of 18.4 degrees is calculated by taking the inverse tangent of the slope ratio and represents the steepness of the roof. It is important to note that the actual dimensions and measurements of the shed and barn were not provided, and the angle calculated here assumes a consistent slope throughout the roof.
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Determine the maximum shear stress in the beam and the minimum yield strength that should be considered to obtain a minimum factor of safety of 2 based on the distortion-energy theory. The maximum shear stress in the beam is 1875 Numeric ResponseEdit Unavailable. 1875 correct.psi. The minimum yield strength based on the distortion-energy theory is
Answer: hello some parts of your question is missing attached below is the missing part
max shear stress = 1875 psi
minimum yield strength = 14911.76 psi
Explanation:
Since The maximum shear stress in the Beam is already given as 1875 psi , I will calculate for the minimum yield strength
Determine minimum yield strength
attached below is the detailed solution
minimum yield strength = 14911.76 psi
which of the following would not typically be part of an incident response plan?
a. policy creation b. investigation c. containment or mitigation d. recovery
The correct option to the sentence "which of the following would not typically be part of an incident response plan?" is: a. policy creation
An incident response plan is a set of procedures designed to help organizations deal with cybersecurity incidents. It is intended to be a comprehensive plan that covers the entire incident response process, from detection to recovery. Incident response plans typically include several stages, including preparation, detection, analysis, containment, eradication, and recovery. Policy creation is the only option that would not typically be a part of an incident response plan.
An incident is an event that occurs that affects the security or normal operations of an organization's computer network or information systems. An incident can be anything from a virus infection to a cyber attack, and it can be caused by internal or external factors.
A response is the process of reacting to an incident, including identifying and analyzing the incident, taking steps to contain and mitigate the damage, and recovering from the incident. A response can involve a wide range of activities, including notification, investigation, containment or mitigation, recovery, and analysis. Policy creation is a strategic action that involves the development of policies and procedures for an organization's information security program. It is usually done outside the incident response plan.
Therefore, option A (policy creation) is the option that would not typically be part of an incident response plan.
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A vibration system consists of a mass 50 kg, a spring of stiffness 30 kN/m and a damper. The
damping provided is only 20% of the critical value. Determine (a) the damping factor, (b) the
critical damping coefficient, (c) the natural frequency of the damped vibrations, (d) the
logarithmic decrement and (e) the ratio of two consecutive amplitudes.
Answer:
20% of the critical value. Determine (a) the damping factor, (b) the
Explanation:
is a saddle point an attractor
A saddle point is a point that behaves as an attractor for some trajectories and a repellor for others.
What are the types of attractors?Attractors can be categorized into four different categories: point attractor, limit cycle attractor, torus attractor, and unusual attractor. A saddle point is a location where some trajectories are attracted to it while others are repelled by it. The places in a multivariable function's domain where the tangent is perpendicular to the horizontal axis are known as the saddle points, but these points typically are neither local maximums nor local minimums. An attractor is a collection of invariant under dynamics states (points in the phase space) that nearby states in a specific basin of attraction asymptotically move toward during the course of dynamic evolution.To learn more about saddle point refer to:
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The shaft is supported at its ends by two journal bearings (at a and b) and is subjected to the forces applied to the pulleys fixed to the shaft. determine the resultant internal loadings acting on the cross section of the shaft at point d.
We must examine the forces and moments acting on the shaft in order to ascertain the internal loadings that will ultimately affect the cross section of the shaft at point d.
A shaft is a mechanical device that moves torque and power from one place to another. In order to support and transfer torque and axial loads between two or more components, it is a rotating machine element that is typically cylindrical in shape. Shafts are utilised in a variety of equipment, including industrial, mechanical, and automotive applications. The shaft's material varies on the application, and the design must take fatigue and wear into account in addition to bending, torsional, and axial loading. In order to assure dependable operation and avoid equipment damage, proper shaft design is essential and calls for knowledge of both mechanics and materials science.
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51.
What is a subpanel?
Answer:
im pretty sure its answer D
Explanation:
Which option identifies the section of a project charter represented in the following scenario?
Updated POS terminals will be available to the following five departments by July 31, 2015.
O project assumptions
O project deliverables
O project constraints
O project requirements
Fugacity could be calculated for gases and liquids T) True F False
Fugacity could be calculated for gases and liquids. This statement is true.
The chemical potential of a condensed phase (liquid or solid) in equilibrium with its vapour phase is equal to the vapour's chemical potential, and as a result, the fugacity is also equal to the fugacity of the vapour. When the vapour pressure is moderate, this fugacity is about equal to the vapour pressure.
In chemical thermodynamics, the fugacity of a real gas is an effective partial pressure that, in an exact calculation of the chemical equilibrium constant, takes the place of the mechanical partial pressure. It is equivalent to the pressure of an ideal gas with the same molar Gibbs free energy, temperature, and pressure as the actual gas.
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Yomakie investment has been told that they may win their bid to house the Haastrup Library if they can guarantee that they can fund the upkeep and repairs in perpetuity. The library is expected to cost ₦20000 every year for light bulbs, plus ₦100,000 every two years for minor repairs plus an additional ₦5,000,000 every 5years for a complete refurnishing of the facility. How much must be deposited today to guarantee the funding of these expenses? Assume a nominal interest rate of 6% compounded monthly
Yomakie investment has been told that they may win their bid to house the Haastrup Library if they can guarantee that they can fund the upkeep and repairs in perpetuity. The library is expected to cost ₦20000 every year for light bulbs, plus ₦100,000 every two years for minor repairs plus an additional ₦5,000,000 every 5years for a complete refurnishing of the facility. How much must be deposited today to guarantee the funding of these expenses? Assume a nominal interest rate of 6% compounded monthly
Is the impedance of the capacitor purely reactive, and how does it compare to the nominal value of the ideal capacitor? Why or why not is it purely reactive?
In an electric field, a capacitor is a device that stores electrical energy. It has two terminals and is a passive electrical component. Capacitance refers to a capacitor's effect.
What is the impedance of an ideal capacitor?An perfect capacitor has an infinite resistance. For all frequencies and capacitance levels, the reactance of a perfect capacitor, and consequently its impedance, is negative.A capacitor that has no resistance and therefore doesn't lose any energy while it's operating is the ideal capacitor. It just possesses capacitance. There is no dielectric loss in a perfect capacitor. High temperature stability characterizes the ideal capacitor.As capacitance and frequency increase, capacitive reactance falls. Impedance is the complete opposition that reactance and resistance give.Similar to inductors, the ideal capacitor is a totally reactive device with no resistive (power dissipative) effects whatsoever. Of course, nothing is so flawless in the actual world. Capacitors, however, have the advantage of often being more pure reactive componentsTo learn more about Ideal capacitor refer to:
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The student came up with a model that shows a loop of wire being rotated by some external force between two strong, permanent magnets. This causes the charges in the loop to flow. Pole piece Armature Slip ring What did the student make - a model of --
A. a motor B. both a motor and a generator C. neither a motor nor a generator D. a generator
The model that the student made is a motor. So, the answer is option A.
Key elements in the motor modelThe following are the key elements that the student has used to make a model of a motor:
Pole pieceArmatureSlip ringThe pole pieces are placed on the edges of the strong, permanent magnets.
The Armature is a loop of wire that the student is rotating.
Finally, the slip rings are used to transfer electrical power from the armature to the external source.
With the flow of current in the loop, a magnetic field is established that interacts with the poles of the magnet, causing the armature to spin. The model is similar to a motor as it uses the basic principle of a motor - electromagnetic induction to convert electrical energy into mechanical energy.
Therefore, the student has made a model of a motor..
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Which description of Texas's highway system is true?
Texas's highway system is true in that it is extensive, well-maintained, and includes a combination of interstate highways, state highways, and toll roads, providing efficient transportation and connectivity throughout the state.
Texas's highway system is one of the largest and most extensive in the United States. The system includes over 80,000 miles of highways, roads, and freeways, with over 3,300 miles of interstate highways alone. The highway system in Texas is maintained and managed by the Texas Department of Transportation (TxDOT), which oversees the construction, maintenance, and operation of the state's roadways.
The Interstate Highway System is a crucial part of Texas's highway system, with 25 interstates running through the state, including I-10, I-20, I-35, and I-45. These highways connect Texas to major cities across the United States, including Los Angeles, New Orleans, and Chicago.
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6. What is the resistance of a curling iron that draws 12 A of current on a 120 V circuit?
Answer:
10 ohms Ω
Explanation:
V = IR
120 = I(12)
120/12 = 10Ω
If a metal has a specific heat, then the metal could make an excellent material for cookware because.
Considering that the metal has a low specific heat, it could be a great material for cookware.
What are metals ?
Metals are substances that develop naturally beneath the Earth's surface. Most metals are shiny or lustrous. Because they are inorganic, metals are composed of materials that have never been alive.
In order to raise a body's temperature per unit mass, a certain amount of energy is needed, which is known as specific heat. It takes less energy to heat the cookware up when the specific heat is low. Cookware is made with the handles having a higher specific heat than the actual cooking portion, which is designed to have a low specific heat. Since the handles would take longer to get hot, the high specific heat at the handles ensures safety.
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The big ben clock tower in london has clocks on all four sides. If each clock has a minute hand that is 11.5 feed in length, how far does the tip of each hand travel in 52 minutes?
Answer:
Updated question
The big ben clock tower in London has clocks on all four sides. If each clock has a minute hand that is 11.5 feet in length, how far does the tip of each hand travel in 52 minutes?
The distance traveled by the tip of the minute hand of the clock would be 62.59 ft
Explanation:
Let us assume the shape of the clock is circular.
the minute hand is equal to the radius = 11.5 ft
Diameter = radius x 2
Diameter = 11.5 x 2 = 23 ft
The distance traveled by the tip of the minute hand can be calculated thus;
the fraction of the circumference traveled by the minute hand would be;
52/60 = 0.8667
Circumference of the clock would be;
C = pi x d
where C is the circumference
pi is a constant
d is the diameter
C = 3.14 x 23
C = 72.22 ft
Therefore the fraction of the circumference covered by the minute hand would be;
72.22 ft x 0.8667 = 62.59 ft
Therefore the distance traveled by the tip of the minute hand of the clock would be 62.59 ft
which of the following is true? a. a radial load is applied when the pressure from the load is perpendicular to the axis of the shaft, whereas an axial load is applied when the pressure from the load is parallel to the axis of the shaft. b. an axial load is applied when the pressure from the load is perpendicular to the axis of the shaft, whereas a radial load is applied when the pressure from the load is parallel to the axis of the shaft. c. both radial and axial loads are applied when the pressure from the load is perpendicular to the axis of the shaft. d. both radial and axial loads are applied when the pressure from the load is parallel to the axis of the shaft.
Option A holds the correct answer. Because the statement given in option A truly reflects the radial load and axial load.
When the load pressure is perpendicular to the axis of the shaft, a radial load is applied and when the load pressure is parallel to the axis of the shaft, an axial load is applied. In other words, the radial load is applied when the pressure from the load is 'perpendicular to the axis of the shaft'. In contrast, the axial load is applied when the pressure from the load is 'parallel to the axis of the shaft'.
However, the rest of the statements are not correct in the context of radial loads and axial loads.
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four subjects civil engineers need to study
Answer:
A civil engineering degree program applies mathematics and physical science to solve specific, real-world problems in commerce and industry. A strong civil engineering program typically emphasizes the practical use of geometry, trigonometry, and calculus in conjunction with physics, material science, and chemistry.
Explanation:
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You apply a potential difference of 4.50 V between the ends of a wire that is 2.50 m in length and 0.654 mm in radius. The resulting current through the wire is 17.6 A. What is the resistivity of the wire?
After doing calculation based on given data in question we found that the resistivity of the wire is 1.68 x 10⁻⁸ Ω·m.
Calculation of Resistivity of a Wire using Potential Difference and CurrentResistivity is a measure of a material's ability to resist the flow of electric current. It is defined as the resistance of a unit length of a material with unit cross-sectional area. The SI unit of resistivity is ohm-meter (Ω·m). Resistivity depends on several factors, such as the material's composition, temperature, and other physical properties. Materials with high resistivity are called insulators, while those with low resistivity are called conductors.
The resistivity of the wire can be calculated using the formula:
ρ = (πr²L)/A
where ρ is the resistivity of the wire, r is the radius of the wire, L is the length of the wire, and A is the cross-sectional area of the wire.
The cross-sectional area of the wire can be calculated using the formula:
A = πr²
Substituting this value of A into the resistivity formula, we get:
ρ = (πr²L)/πr² = L
The resistance of the wire can be calculated using Ohm's law:
R = V/I
where R is the resistance of the wire, V is the potential difference applied to the wire, and I is the current flowing through the wire.
Substituting the given values, we get:
R = 4.50 V/17.6 A = 0.256 Ω
The resistivity of the wire can now be calculated using the formula:
ρ = RA/L
Substituting the values we have calculated, we get:
ρ = (0.256 Ω)(π(0.654 mm/1000)²)/(2.50 m) = 1.68 x 10⁻⁸ Ω·m
Therefore, the resistivity of the wire is 1.68 x 10⁻⁸ Ω·m.
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When choosing a respirator for your job, you must conduct a
test.
energy.
49 As your vehicle crumples in a crash, it
Reflects
Rejects
Absorbs
Deflects
Answer:
modern vehicles are made to crunch up a little bit so they that absorbe some of the impact instead of you
Explanation:
An inductor with an inductance of 3.6 H is connected to a 480-V, 60-Hz line. How much current will flow in this circuit?
An inductor with an inductance of 3.6 H is connected to a 480-V, 60-Hz line.
To calculate the current that will flow in this circuit, we need to use the formula: XL = 2πfL, XL is the inductive reactance, L is the inductance f is the frequency. The inductive reactance XL can be calculated as:XL = 2π × 60 × 3.6 = 1357.17 Ω
Now we can use ohm's law to calculate the current I:V = IXL where V is the voltage in volts, I is the current in amperes, and XL is the inductive reactance in ohms. Substituting the given values, we get:480 = I × 1357.17I = 480 / 1357.17 ≈ 0.354 AI ≈ 0.354 A (rounded to three decimal places)Therefore, the current that will flow in the circuit is approximately 0.354 A.
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How do I answer all the questions on this page?
Answer:
Create a google docs copy everything and paste hope this helps! :)
Explanation:
two technicians are comparing rack-and-pinion steering to recirculating ball steering. technician a says that recirculating ball steering is more easily damaged when a wheel hits a rock. technician b says that recirculating ball steering gears are mounted on rubber bushings to help cushion shocks. who is correct?
Note that where two technicians are comparing rack-and-pinion steering to recirculating ball steering. technician a says that recirculating ball steering is more easily damaged when a wheel hits a rock. technician b says that recirculating ball steering gears are mounted on rubber bushings to help cushion shocks. None of the technicians is right.
What is rack-and-pinion steering?The rotation of the pinion creates linear motion of the rack, which rotates the vehicle's wheels left or right using rack and pinion steering. Railways frequently use rack and pinion systems. A pinion (a circular gear) and a rack (a linear gear) comprise a rack and pinion steering system.
A steering wheel that is difficult to turn or excessively tight might indicate an issue with your rack and pinion. Another sign is if your gearbox overheats or loses hydraulic pressure due to a lack of steering fluid.
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What is the meaning of beauty and completeness? In relation to these what are the attributes a Muslim should adopt?
ᴄᴏᴍᴘʟᴇᴛᴇɴᴇꜱꜱ ᴍᴇᴀɴꜱ ᴛʜᴇ ꜱᴛᴀᴛᴇ ᴏꜰ ʙᴇɪɴɢ ᴄᴏᴍᴘʟᴇᴛᴇ ᴀɴᴅ ᴇɴᴛɪʀᴇ; ʜᴀᴠɪɴɢ ᴇᴠᴇʀʏᴛʜɪɴɢ ᴛʜᴀᴛ ɪꜱ ɴᴇᴇᴅᴇᴅ.
ʙᴇᴀᴜᴛʏ ᴍᴇᴀɴꜱ combination of qualities, such as shape, colour, or form, that pleases the aesthetic senses, especially the sight.
which of the following is not a gui component (control or widget)?
A database is not considered a GUI component because it serves a different purpose in managing and organizing data rather than being a visual control or widget on the user interface.
What is a non-GUI component or control?One example of a non-GUI component (control or widget) is a database.
A database is not considered a GUI component because it is not a visual element that the user interacts with directly on the graphical user interface.
Instead, a database is a structured collection of data that is organized and managed in a separate system.
It is used to store, retrieve, and manage data in a structured manner, typically through queries and operations performed by other GUI components.
GUI components, on the other hand, refer to the visual elements or controls that users interact with directly on the graphical user interface.
Examples of GUI components include buttons, text boxes, checkboxes, radio buttons, dropdown menus, sliders, etc.
These components enable user interaction and provide a way for users to input data, make selections, and trigger actions within the GUI.
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A circuit contains four 100 ohm resistors connected in series. If you test the circuit with a DMM you should read a total resistance value of
A. 250 ohms.
. B. 1000 ohms
C. 400 ohms
D. 100 ohms