The term for a very precise, symbol-driven engineering language that consists of accurate definitions and symbols to ensure form, fit, and function of individual part features and relationships is called Geometric Dimensioning and Tolerancing (GD&T).
The term for a very precise, symbol-driven, engineering language consisting of precise definitions and symbols that helps to assure form, fit, and function of individual part features and relationships is known as Geometric Dimensioning and Tolerancing (GD&T). It is a system of symbols and language used to define and communicate engineering drawings and specifications, enabling clear communication of design intent and ensuring the quality and consistency of manufactured parts. GD&T allows for the precise definition and measurement of relationships between part features, providing a framework for ensuring the proper form, fit, and function of components in complex systems.
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A ball bearing has been selected with the bore size specified in the catalog as 35.000 mm to 35.020 mm. Specify appropriate minimum and maximum shaft diameters to provide a locational interference fit.
Answer:
A ball bearing has been selected with the bore size specified in the catalog as 35.000 mm to 35.020 mm. Specify.... ... has been selected with the bore size specified in the catalog as 35.000 mm to 35.020 mm. Specify appropriate minimum and maximum shaft diameters to provide a locational interference fit.
Explanation:
1.What is three phase? why it is needed?
2. What is the condition to be balanced? Write down voltage equation of a balanced 3 phase voltage source and draw their phasor diagram.
1. We can see here that three phase refers to a type of electrical power transmission that uses three alternating current (AC) waveforms that are 120 degrees out of phase with each other. This is different from single-phase power transmission, which uses only one AC waveform.
What is voltage?Voltage, also known as electric potential difference, is a measure of the electrical potential energy per unit of charge in an electrical circuit. It is defined as the amount of work required to move a unit of electric charge between two points in a circuit, typically measured in volts (V).
Three-phase power is needed because it allows for more power to be transmitted over a given amount of wire or cable. With three-phase power, the power is delivered in a more consistent manner, which means that there is less voltage drop over long distances.
2. In order for a three-phase system to be balanced, the three phases must have the same amplitude and be 120 degrees out of phase with each other. The voltage equation of a balanced three-phase voltage source is given by:
Vph = Vline / √3
where Vph is the phase voltage and Vline is the line voltage. The phasor diagram for a balanced three-phase system shows three sinusoidal waveforms that are displaced by 120 degrees from each other.
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During a static governor adjustment, make sure that the speed control is in ________ ?
Idle position
Curb idle position
Transition speed
Fast or wide-open throttle position
Answer:
Fast or wide-open throttle position
Many solderless connectors are color coded for the size of wire they are designd to work with. WHat size is indicated by the color blue?
Blue insulated connectors used for joining 1.1mm² – 2.5mm² cable sizes.
Green or green with a yellow stripe serves as the protective ground. The neutral wire is white, the hot single phase wires are black, and the second active wire is red. Red, black, and blue three-phase lines.
What is solderless connectors?Solderless connections are ideal when high reliability is not required. Such as components that must be unplugged or replaced on a regular basis or that you anticipate changing in the near future.
Connector tension A solderless device is one that makes a mechanical connection between two or more conductors or between one or more conductors and a terminal without the use of solder.
Solderless strip connectors are used to connect LED strip lights without using solder. They work by inserting the strip into the connectors below. The strip's contact pads slide beneath the connector's contact prongs, completing the electrical circuit.
Strip connectors without soldering do not form a permanent electrical connection with the strip light. While the clasp's teeth do an adequate job of holding the strip in place, movement is still possible - and if there is a lot of it, the contact pads are likely to move away from the contact prongs and lose connection.
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once scientist has asked a question conducted an investigation and analyzed the data his or hwr goalis to
Answer:
hola
Explanation:
Explanation:
so its an question?..........
A 4 stroke over-square single cylinder engine with an over square ratio of 1.1,the displacement volume of the engine is 245cc .The clearance volume is 27.2cc the bore of this engine is ?
Answer:
10.007
Explanation:
Assuming we have to find out the compression ratio of the engine
Given information
Cubic capacity of the engine, V = 245 cc
Clearance volume, V_c = 27.2 cc
over square-ratio = 1.1
thus,
D/L = 1.1
where,
D is the bore
L is the stroke
Now,
Volume of the engine V =\(\frac{\pi}{4} D^2L\)
plugging values we get
245 = \(\frac{\pi}{4} D^3/1.1\)
Solving we get D =7 cm
therefore, L= 7/1.1 =6.36 cm
Now,
the compression ratio is given as:
r =(V+V_c)/V_c
on substituting the values, we get
r = (245+27.2)/27.2 =10.007
Hence, Compression ratio = 10.007
a commercial refrigerator with r-134a as the working fluid is used to keep the refrigerated space at -35 c by rejecting waste heat to cooling water that enters the condenser at 18 c at a rate of 0.25 kg/s and leaves at 26 c. the refrigerant enters the condenser at 1.2 mpa and 50 c and leaves at the same pressure subcooled by 6 c. if the compressor consumes 3.3 kw of power , determine (a) the mass flow rate of the refrigerant, b) the refrigerant load, c) the cop, and d) the minimum power input to the compressor for the same refrigeration load.
At 1.2mpa pressure and 50c
What is pressure?
By pressing a knife against some fruit, one can see a straightforward illustration of pressure. The surface won't be cut if you press the flat part of the knife against the fruit. The force is dispersed over a wide area (low pressure).
a)Mass flow rate of the refrigerant
Therefore h1= condenser inlet enthalpy =278.28KJ/Kg
saturation temperature at 1.2mpa is 46.29C
Therefore the temperature of the condenser
T2 = 46.29C - 5
T2 = 41.29C
Now,
d)power consumed by compressor W = 3.3KW
Q4 = QL + w = Q4
QL = mR(h1-h2)-W
= 0.0498 x (278.26 - 110.19)-3.3
=5.074KW
Hence refrigerator load is 5.74Kg
(COP)r = 238/53
(Cop) = 4.490
Therefore the above values are the (a) mass flow rate of the refrigerant, b) the refrigerant load, c) the cop, and d) the minimum power input to the compressor for the same refrigeration load.
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Five kg of water is contained in a piston–cylinder assembly, initially at 5 bar and 240°C. The water is slowly heated at constant pressure to a final state. The heat transfer for the process is 2660 kJ and kinetic and potential energy effects are negligible. Determine the final volume, in m3, and the work for the process, in kJ.
Answer:
Explanation: that’s the answer! 46kg
Before using a vise to mount work, you should do all of the following except
Before using a vise to mount work, wipe the vise base and worktable clean, inspect it for burrs and nicks, and bolt it firmly to the table.
What is meant by vise?A vise or vice is a mechanical tool used to hold an object in place so that work can be done on it. The two parallel jaws of a vise are threaded in and out by a screw and a lever, with one jaw being fixed and the other movable. A set of locking pliers with a lever action is what is meant by the term "vise grip." A vise, also spelled vice, is a holding mechanism with two parallel jaws; one jaw is fixed and the other is moveable via a screw, lever, or cam. The vise may be permanently affixed to a bench when used to hold a workpiece during manual processes like filing, hammering, or sawing.The complete question is,
When a vise is used to mount work, ____.
wipe the vise base and worktable clean, inspect it for burrs and nicks, and bolt it firmly to the table
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Select three steps that are necessary in order to perform reverse engineering correctly.
Responses
recreate existing products
recreate existing products
document accurately
document accurately
break down to the smallest level
break down to the smallest level
use a systematic approach
use a systematic approach
only use computer-simulated diagrams
only use computer-simulated diagrams
The correct responses are:
- Document accurately
- Break down to the smallest level
- Use a systematic approach
Explanation:
The three steps that are necessary to perform reverse engineering correctly are:
1. Document accurately: It is essential to document the existing product accurately to avoid missing any details that could affect the final design.
2. Break down to the smallest level: The existing product should be broken down into its smallest components to understand how they work and how they are interconnected.
3. Use a systematic approach: A systematic approach should be used to analyze the product, identify its components, and understand how they work together. This can help to ensure that the final design is accurate and functional.
Therefore, the correct responses are:
- Document accurately
- Break down to the smallest level
- Use a systematic approach
Select the correct answer.
Tires need to be regularly:
A.
Replaced
B.
Rotated
C.
Both A and B
D.
None of the above
The home inspector should measure the _____ depth of insulation observed at the unfinished attic floor.
The home inspector should measure the approximate average depth of insulation observed at the unfinished attic floor.
What is insulation?This is known to be a kind of material that is often used to bring to a stop the flow or linking of electricity, heat, or sound from a given conductor to another.
Note that the home inspector should measure the approximate average depth of insulation observed at the unfinished attic floor as that is the bet thing to do.
See options below
exact
approximate average
measured exact
approximate weighted
measured average
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A bypass ratio 4.0 turbofan engine has split core and bypass nozzles. The high pressure turbine drives the high pressure axial compressor and the low pressure turbine drives the fan. The engine is modelled as a standard air cycle with cold-air-standard assumptions. The air stagnation temperature rise across the fan To3-T02 = 31 °C and the stagnation temperature rise across the high pressure axial compressor To4-T03 58 °C. The turbine inlet stagnation temperature To5 = 1286 K. Ignoring bearing losses, estimate the low pressure turbine outlet temperature. State your answer in degrees Kelvin to zero decimal places and enter the numerical value only. Partial credit is awarded for a reasonable approximation to the correct numerical answer.
Given data: bypass ratio 4.0 turbofan engine, high pressure turbine drives high pressure axial compressor, low pressure turbine drives the fan, air stagnation temperature rise across the fan To3-T02 = 31 °C, stagnation temperature rise across the high pressure axial compressor To4-T03 = 58 °C, turbine inlet stagnation temperature To5 = 1286 KWe have to calculate the low-pressure turbine outlet temperature.
We can do it by using the First law of thermodynamics for a steady-flow system which is represented by the equation below:Q - W = ΔHHere, Q is the heat transfer, W is the work done by the system, and ΔH is the enthalpy change of the system. Since there is no heat transfer between the system and surroundings, Q is zero.
As we are ignoring bearing losses, W is also zero. Hence,ΔH = 0Or, H5 - H4 = 0We can rewrite this as, H5 = H4Since the air cycle is modeled on cold-air-standard assumptions, the enthalpy difference can be expressed as: H5 - H4 = Cp .336 KTherefore, T3 = T5 - 1.336T3 = 1286 - 1.336 = 1284.664 KThe low-pressure turbine outlet temperature is approximately 1284 K.
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Technician A says that some circuit breakers must be reset after they are tripped by an overload. Technician B says that some circuit breakers are self-resetting. Who is right
Technician A says that some circuit breakers must be reset after they are tripped by an overload. This is a right statement.
What is meant by circuit ?
A circuit in electronics is a fully enclosed circle through which electricity travels. A load, conductors, and a current source make up a basic circuit. Any fixed path that electricity, data, or a signal can go through can be referred to as a circuit in a broad sense.The three fundamental circuit types are series, parallel, and series-parallel. Typically, one or more resistance or load devices are combined in a single electrical circuit.The circular path that must always be followed in order for electricity to circulate and perform beneficial tasks is known as a circuit. We are creating a circuit, which is a route with a common beginning and ending point.To learn more about circuit refer to
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Both Technician A and Technician B are correct.
Circuit breakers are devices that protect electrical systems and devices from overloads and short circuits. They work by sensing when the current flowing through an electrical circuit exceeds a certain level and then breaking the circuit to prevent damage to the system.
Some circuit breakers are self-resetting, which means that once the current flowing through the circuit returns to normal, the circuit breaker will automatically turn back on, allowing power to flow through the circuit once again. These type of breakers are often used in household circuits, commercial buildings, and industrial settings.
On the other hand, other circuit breakers must be manually reset after they are tripped by an overload. Once the current is reduced to a normal level and the circuit breaker is tripped, the technician or the user have to physically push the breaker back to the "On" position to restore power to the circuit. These type of breakers are typically used in electrical systems that require a higher level of protection or where it is not feasible to have an automatic reset.
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an adiabatic turbine expands steam from 500C , 3.5 Mpa to 200C and 0.3MPa . if the turbine generates 750 kw. what is the flow rate of steam through the turbine ?
The flow rate of steam through the turbine is 1.28kg/s.
What is Steam Turbine?Powered by steam, as the name suggests, is a steam turbine. Steam expands and cools as it passes by the rotating blades of the turbine as hot, gaseous steam, releasing most of its energy. The blades are continually spinning due to this steam. Thus, the majority of the potential energy in the steam is converted into kinetic energy by the blades. An apparatus that transfers mechanical energy from one particular energy source to another is called a motor. Considering that it may produce mechanical work from the steam flow, a steam turbine is a motor machine.With the help of a steam turbine, steam's heat energy is transformed into mechanical energy. Afterward, the generator transforms the mechanical energy into electrical power. The reliable supply of electrical power and the lessening of environmental impact will be facilitated by our highly effective and environmentally friendly power plants.Steam enters the turbine at\($3.5 \mathrm{MPa}$\) and 500 degrees Celsius. The specific enthalpy is:
\($$h_1=3451.7 \mathrm{~kJ} / \mathrm{kg}$$\)
State 2
The steam exits the turbine at \($0.3 \mathrm{MPa}$\) and 200 degrees Celsius. The specific enthalpy is:
\($$h_2=2865.9 \mathrm{~kJ} / \mathrm{kg}$$\)
Now, let's determine the flow rate from the first law of thermodynamics.
\(& \dot{Q}-\dot{W}=\dot{m}\left[h_2-h_1\right] \\\)
\(& \dot{m}=\frac{\dot{Q}-\dot{W}}{h_2-h_1}=\frac{0-(750 \mathrm{~kW})}{(2865.9-3451.7) \frac{k J}{\mathrm{~kg}}}\left[\frac{1 \frac{\mathrm{kJ}}{\mathrm{s}}}{1 \mathrm{~kW}}\right]=1.28 \mathrm{~kg} / \mathrm{s}\)
\($$\dot{m}=1.28 \mathrm{~kg} / \mathrm{s}$$\)
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The number of bits on a transmission line that are in the process of actively being transmitted (i.e.,the number of bits that have been transmitted but have not yet been received) is referred to as the bit length of the line. Plot the line distance versus the transmission speed for a bit length of 1000 bits.Assume a propagation velocity of 2 X 108 m/s.
Answer:
The plotted diagram of line distance versus the transmission speed is uploaded below.
Explanation:
Given the data in the question;
Bit length B = 1000 bits
propagation velocity V = 2 × 10⁸ m/s
now, we know that the bit length of a link is expressed as;
B = R × d/V
where V is propagation velocity
d is the distance
R is the transmission speed
B is bit length
so we substitute
1000 = R × d/(2 × 10⁸)
1000 = Rd/(2 × 10⁸)
2 × 10¹¹ = Rd
R = 2 × 10¹¹ / d
R = 2E+11
Hence, we plot the transmission speed versus line distance; as shown in the image BELOW.
From the plot, if the transmission speed increases, the distances between stations decreases and vise versa.
Hence, both are inversely proportional.
The graph plot of line distance versus the transmission speed for a bit length of 1000 bits is; plotted below with Lν = 2 × 10¹¹ m/s
What is the number of bits on a transmission line?
We are given;
Bit length; B = 1000 bits
Propagation velocity; V = 2 × 10⁸ m/s
Formula for bit length of a link is expressed as;
B = ν × L/V
where;
V is propagation velocity
L is the distance
ν is the transmission speed
B is bit length
Thus, plugging in the relevant values gives;
1000 = ν × L/(2 × 10⁸)
Thus;
Lν = 1000 × 2 × 10⁸
Lν = 2 × 10¹¹ m/s
Thus, find the attached image of a graph showing the line distance versus the transmission speed for a bit length of 1000 bits.
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if the collector voltage is raised, what is the maximum collector voltage that keeps the collectorbase junction reverse biased?
The maximum collector voltage that keeps the collector-base junction reverse biased is determined by the breakdown voltage of the junction, which is the voltage at which the junction.
The collector-base junction in a bipolar junction transistor (BJT) acts as a switch that allows or prohibits current flow between the collector and base terminals. To maintain the reverse bias configuration, the voltage across the collector-base junction should remain below the breakdown voltage of the junction. The breakdown voltage, also known as the peak inverse voltage (PIV), is the maximum voltage that the junction can withstand in reverse bias before becoming forward-biased and allowing current to flow.
If the collector voltage exceeds the breakdown voltage, the junction will conduct current and may become damaged, leading to permanent degradation or failure of the device. The exact value of the breakdown voltage depends on the specific BJT and its manufacturing process and can be found in the datasheet for the device. It is important to consider the breakdown voltage when designing circuits with BJTs to avoid exceeding the limit and damaging the device.
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a 5-cm-external-diameter, 10-m-long hot water pipe at 80°c is losing heat to the surrounding air at 5°c by natural convection with a heat transfer coefficient of 25 w/m2 · °c. determine the rate of heat loss from the pipe by natural convection, in
To determine the rate of heat loss from the pipe by natural convection, we can use the formula for heat transfer by convection: Q = h * A * ΔT
Where:
= rate of heat loss (in watts)
h = heat transfer coefficient (in W/m^2 · °C)
A = surface area of the pipe (in m^2)
ΔT = temperature difference between the pipe and surrounding air (in °C) First, we need to calculate the surface area of the pipe.
Since it is a cylindrical pipe, we can use the formula:
A = π * D * L Where: A = surface area of the pipe (in m^2)
D = external diameter of the pipe (in m)
L = length of the pipe (in m)
Given:
D = 5 cm
= 0.05 m L
= 10 m
Plugging in the values:
A = π * 0.05 * 10 A = 1.57 m^2 (approx.) Next, we can calculate the temperature difference:
ΔT = Tippie - Thair
ΔT = 80 - 5
ΔT = 75°C
Now, we can calculate the rate of heat loss:
Q = 25 * 1.57 * 75 Q ≈ 2943.75
watts The rate of heat loss from the pipe by natural convection is approximately 2943.75 watts. The rate of heat loss from the pipe can be determined using the formula for heat transfer by convection, which is Q = h * A * ΔT. Here, Q represents the rate of heat loss in watts, h is the heat transfer coefficient in W/m^2 · °C, A is the surface area of the pipe in m^2, and ΔT is the temperature difference between the pipe and the surrounding air in °C.
To begin, we need to calculate the surface area of the pipe. Since it is a cylindrical pipe, we can use the formula A = π * D * L, where D is the external diameter of the pipe in meters, and L is the length of the pipe in meters. Given that the external diameter is 5 cm, or 0.05 m, and the length is 10 m, we can calculate the surface area as follows:
A = π * 0.05 * 10
A ≈ 1.57 m^2.
Next, we calculate the temperature difference between the pipe and the surrounding air. This is done by subtracting the air temperature from the pipe temperature:
ΔT = Tippie - Thair
ΔT = 80 - 5
ΔT = 75°C.
Finally, we can calculate the rate of heat loss using the formula
Q = h * A * ΔT. Given that the heat transfer coefficient is 25 W/m^2 · °C, we have:
Q = 25 * 1.57 * 75
Q ≈ 2943.75 watts.
The rate of heat loss from the pipe by natural convection is approximately 2943.75 watts.
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I have an air compressor with a small storage tank at home. It has an operating pressure of 150 psig (notice that this is a gage pressure). Assuming standard atmospheric pressure, what is the absolute pressure of the air inside the storage tank in psia
Answer:
900 psig
Explanation:
Hey guys can anyone list chemical engineering advancement that has been discovered within the past 20 years
• Differentiate between laboratory and industrial reactors
Answer:
A reactor is a piece of equipment in which the feedstock is converted to the desired product. Reactors are chosen such that they meet the requirements imposed by the reaction mechanisms, rate expressions, and the required production capacity. Other parameters that must be determined to choose the correct type of reactor are reaction heat, reaction rate constant, heat transfer coefficient, and reactor size. Reactors that are free of the effect of the macro-kinetic properties are classified as: batch isothermal perfectly stirred reactor, batch adiabatic perfectly stirred reactor, semi-batch perfectly stirred reactor, continuous isothermal perfectly stirred reactor flow reactor, continuous adiabatic perfectly stirred flow reactor, continuous isothermal plug flow reactor, and continuous adiabatic plug flow reactor.
Use the HELPrct data from the mosaicData to calculate the mean of all numeric variables (be sure to exclude missing values)
To calculate the mean of all numeric variables in the HELPrct data from the mosaicData package, we can use the colMeans() function in R. This function calculates the mean of each column in a data frame.
However, it only works on numeric columns, so we need to first remove any non-numeric columns or missing values.
To do this, we can use the select_if() function from the dplyr package to only select columns that are numeric. Then, we can use the na.omit() function to remove any rows with missing values. Finally, we can use the colMeans() function to calculate the mean of each column.
Here's the code:
library(mosaicData)
library(dplyr)
# Select only numeric columns
numeric_cols <- select_if(HELPrct, is.numeric)
# Remove rows with missing values
numeric_cols <- na.omit(numeric_cols)
# Calculate column means
means <- colMeans(numeric_cols)
# Print the result
print(means)
This will give us the mean of each numeric column in the HELPrct data, excluding any missing values.
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Tech A says that it is best to use a knife or other type of sharp tool to cut away the insulation when
stripping a wire Tech B says that any issues with wing are more likely to be with the terminals than
with the wires themselves. Who is correct?
5 page paper about the government and how it’s decisions affects the world.
The government, through its decisions and policies, wields significant influence that extends beyond national borders and directly affects the world. Government decisions can have far-reaching impacts on various aspects, including politics, economics, social issues, and the environment.
In the realm of politics, government decisions on international relations, diplomacy, and foreign policy shape global alliances, conflicts, and cooperation. They determine how a country engages with other nations, resolves disputes, and participates in international organizations and agreements.
Economically, government decisions on trade policies, regulations, taxation, and fiscal management impact global markets, investments, and economic stability. Changes in the economic policies of major economies can have ripple effects on other countries, affecting trade flows, exchange rates, and overall global economic conditions.
Government decisions also play a crucial role in addressing global challenges such as climate change, public health crises, and human rights issues. Policies on environmental regulations, international agreements, healthcare initiatives, and human rights advocacy can influence global efforts and cooperation in addressing these pressing issues.
Moreover, government decisions on security and defense policies have implications for global peace and stability. Actions related to arms control, military interventions, and peacekeeping operations can shape geopolitical dynamics and impact international security.
In summary, government decisions have a profound impact on the world by shaping international relations, influencing global economies, addressing global challenges, and affecting peace and security. The interconnectedness of nations and the shared nature of global issues highlight the significance of government decisions in shaping the course of the world.
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What is the primary goal of political parties in televised presidental debates?
to prove which party is best
to present potential candidates
to establish bipartisan agreements
to explain party platforms to voters
i believe it could be c or d, b is the wrong one edge 22
The primary goal of political parties in televised presidential debates is to: D. to explain party platforms to voters.
What is a political party?A political party can be defined as an organized group of individuals (people) who presumably share common political ideologies, aims, goals, vision, and strategies on how a country should be governed.
This ultimately implies that, a political party is an organization of people that are sharing similar political ideologies and it provides a platform for a chosen candidate to run as its sole representative in an election category.
In this context, the primary goal of political parties in televised presidential debates is to explain party platforms to the electorates or voters.
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It's D I just took the test
Edge 2023 :)
in the context of dynamic person-situation interaction, the main difference between evocation and manipulation is that:
Manipulation involves the intentional control of a situation by a person, whereas evocation is the process through which people elicit responses from others simply by displaying certain behaviors.
Manipulation is a term used in psychology to refer to the intentional control of a situation or environment by a person. It can be used to gain control over others, influence their behavior, or alter their perceptions.
Manipulation can be positive or negative, depending on the intention of the person doing the manipulating. Some forms of manipulation may involve deception, coercion, or exploitation.
On the other hand, evocation is a process through which people elicit responses from others simply by displaying certain behaviors. This is often done unintentionally, without the person being aware that they are having an impact on others.
Unlike manipulation, evocation does not involve intentional control over a situation or environment.
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20 points and brainliest is it A, B, C, D
Using your Greek roots and context clues, figure out the meaning of “fissures” in this sentence and select the best definition:
“Look at these recent fissures in the granite roof”
A. an opening made by splitting
B. a crack made from crushing
C. a line made from evaporation
D. a line made from sediment deposits
Answer:
B
Explanation:
Crates A and B weigh 100lb and 50lb , respectively. If they start rest, determine their speed when t=5s. Also, find the force exerted by crate A on crate B during the motion. The cofficient of kinectic friction between the crates the ground is u= 0.25
To solve this problem, we can use Newton's second law of motion:We can also use the equation for kinetic friction:
ΣF = ma
where ΣF is the net force acting on the system, m is the total mass of the system, and a is the acceleration of the system. We can also use the equation for kinetic friction:
f = μN
where f is the force of kinetic friction, μ is the coefficient of kinetic friction,and N is the normal force.
First, we need to find the acceleration of the system:
ΣF = ma
F_net = F_A - f
where F_A is the force exerted by crate A on the system, and f is the force of kinetic friction. Since the system is starting from rest, its initial velocity is 0.
F_A = m_total*a
m_total = m_A + m_B
f = μ*N
N = m_total*g
where g is the acceleration due to gravity.
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When you call your computer manufacturer for technical support, you aren't surprised by the "lilting accents" of the technicians because many call centers operate in other countries, a practice called __________. -offshoring -crowdsourcing -hydrofracking -info graphing
The correct answer is The practice described in the given scenario is called "offshoring."
Offshoring refers to the practice of relocating certain business operations, such as call centers or technical support, to other countries where labor costs may be lower. This allows companies to take advantage of cost savings and potentially access a larger pool of skilled workers. It is common for companies to establish call centers in different countries as part of their offshoring strategy. The mention of "lilting accents" in the scenario suggests that the technicians providing technical support over the phone are located in a different country than the caller, indicating the practice of offshoring.
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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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