DB 1 Spiritual Development in Childhood
docx
keyboard_arrow_up
School
Liberty University *
*We aren’t endorsed by this school
Course
210
Subject
Electrical Engineering
Date
Apr 3, 2024
Type
docx
Pages
2
Uploaded by DeaconFirePheasant41
DB 1 Spiritual Development in Childhood
While there were several good theories for how spiritual development takes place in childhood, Vygotsky’s sociocultural theory was the one that caught my eye the most (Cashion, et al., 2019). Vygotsky’s theory recognized that spiritual development generally involves mentorship or discipleship development within a community of believers. This theory is the acknowledgement
that spiritual formation is not just an internal process. It is not simply the acquisition of knowledge. It is the impact of community. Spiritual development is about the whole person, not just the mind. Disciplines and practices are learned from those who are further along in their spiritual journey. Children learn how to pray, study the Bible, meditate, and worship God from older, mature Christians. Pastors, Sunday school teachers, and youth group leaders help guide young Christians through various stages of life and, therefore, various stages of spiritual development. The community that churches afford young children is unmistakable. It is a wealth of experience, knowledge, and wisdom that cannot be found anywhere else. In my opinion, Vygotsky’s sociocultural theory for spiritual development could be applied to other areas of development for a child (Cashion, et al., 2019). As kids, we learn how to live from our parents teaching us or us watching them. Even beyond parents, our teachers, pastors, aunts, uncles, grandparents, older siblings, and more are all people that are more mature and have more experiences that give them the ability to mentor us as kids. The concept of something older and more mature teaching, coaching, and nurturing is seen across every developmental stage. It is not
contained to just human development, but also to animal development. Because of the need for maturity and experience in developing the young, it only makes sense that this would apply to spiritual development. Not to mention that a great deal of the Bible is made up of countless people in various stages of spiritual development needing a community of wiser, more mature believers to help them to continue to develop in their faiths (
English Standard Version
, 2016). References:
English Standard Version
. (2016). BibleHub. https://biblehub.com.
Cashion, V. et al. (2019).
Lifespan 360: Christian Perspectives on Human Development.
Kendall Hunt Publishing Company.
Your preview ends here
Eager to read complete document? Join bartleby learn and gain access to the full version
- Access to all documents
- Unlimited textbook solutions
- 24/7 expert homework help
Related Questions
PRELIMINARY INFORMATION:
Electrical compensation is a major scale subject that every business/facility is included. The power factor should be
compensated to change the reactive power up to some specific values since some reactive power limits are not good for
consumption and generation of the electricity (this is a far large topic which also forms some subbranches, for more
information and specification please research yourself). For this reason, it is an obligation to use a compensator system for
both manufacturers (wind farms/hydroelectric power plants/etc.) and consumers (residents/factories/etc.). These issues are
regulated by official directives.
EXERCISE STEPS:
Some parameters are given related to your student ID numbers. These are:
V1 = 160 V
f1 = 70 Hz
1) A single-phase load has an active power of P = 2 kW at V1 V @f1Hz and the power factor is coso = 0.75. This motor is
compensated to coso = 0.85 using a parallel capacitor (the load is modelled as series RL). Determine:
a.…
arrow_forward
(a) Household appliances need to be individually fused to keep them safe in case of
fluctuations. For the list of appliances below, work out the rating of the fuses needed
for each one, bearing in mind that it needs to have "headroom" allowing for occasional
working fluctuation, e.g. Dishwasher = 4.17 amps, therefore they come with 5 amp
fuses. Please choose an answer from the list below. Remember to include your
working.
Lamp
0.2 kW Phone charger
60 W
Woofers
430 W Hot plate
1.75 kW
Air fryer
270 W Fridge
1.8 kW steam iron
680 W Gaming console
110 W
(A) - 1 Amps
(B) - 3 Amps
(C) - 6 Amps
(D) - 9
arrow_forward
Subject: Quality engineering
Mention examples of problems in real life, in which some characteristic or parameter can be applied to control/improve it.
Whether it is a product or process
arrow_forward
With appropriate sketching and with your own words, explain the relationship between damping ratio and system response.
** Please don't copy from online sourcs give yours own explanation**
arrow_forward
Explain in detail the difference between a Micro-Electronics / Photonics Engineer and an Electronic Circuit Design Engineer. Be specific and provide details. Please cite all your sources.
• Could these engineers have projects in common? Give examples answer all two
arrow_forward
Please help with the a, b, and c
arrow_forward
Q1
One version of a space station is shown in Fig.1. It is critical to keep this station in the proper
orientation toward the Sun and the Earth for generating power and communications. The
orientation controller may be represented by a unity feedback system with an actuator and
controller, such as:
s+ 25
L(s) = G,(s)G(s)=
s(s² +15s +75)
Construct the state-space of this system using controllable canonical form; illustrate your answer
with the aid of block diagram.
Radar antenna
Solar power panels
Rockets
Adjuster
rockets
Space shuttle
Fig.1: Space Station
arrow_forward
A mixer circuit using an ideal operational amplifier (op-amp), A is shown in the Figure 1
below. Signal y(t) represents the output signal whilst signals x1(t) andx2(t) represent
the input signals. All the resistors are ideal with same resistance, which is 10KQ.
y(t)
A
x:(1)
RI
R3
x:(t)
R2
Figure 1
(a) Determine the expression of the output signal, y(t) in terms of the input signals x,(t)
and x2(t).
(b) Determine whether the output signal, y(t) belongs to the system classifications below
against the input signals x,(t) andx2(t):
i. Time-varying or Time-invariant
ii.
Linear or Nonlinear
ii.
Instantaneous or Dynamic
iv.
Causal or Non-causal
V.
Open loop of Closed loop
Provide the necessary mathematical calculations or statements to support your
arguments.
arrow_forward
c)
A Power amplifier driven into compression experiences harmonic
distortion and produces the harmonics shown below.
13
6
-3
-6
fi
f2
f3
f4
Calculate the total harmonic distortion in the amplifier output,
expressing your answer as a percentage.
Power (dBm)
arrow_forward
i need ans within 8 minutes with draw happy emoji in the end my best wishes ton
arrow_forward
Q.4) Voltage and current waveforms at the output side of a converter are shown in the below
figure. Providing proper reasoning, calculate: (a) Effective active (or real) power, (b) Reactive
power, and (c) System power factor.
200
150
100
50
0
30
20
10
0
-10
Voltage_V (V)
Current_I (A)
2m
www
2.5m
3m
Time (s)
3.5m
4m
2
arrow_forward
In your own words, describe Ohm's law. Give two instances from the real world or from your educational career in which it would be used.
arrow_forward
Can someone please clearly explain to me the difference between amps and watts using pictures? Please don't use words that people might not know about. Explain it as if you're teaching it to an elementary school student.
arrow_forward
The subject is Advanced Electronic Circuits
Please send the answer by typing ONLY. I don't want any handwritten.
Show All Answers Steps.
Also, don't copy-paste from the net, as plagiarism will be counted.
Q-04
arrow_forward
SEE MORE QUESTIONS
Recommended textbooks for you

Delmar's Standard Textbook Of Electricity
Electrical Engineering
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Cengage Learning
Related Questions
- PRELIMINARY INFORMATION: Electrical compensation is a major scale subject that every business/facility is included. The power factor should be compensated to change the reactive power up to some specific values since some reactive power limits are not good for consumption and generation of the electricity (this is a far large topic which also forms some subbranches, for more information and specification please research yourself). For this reason, it is an obligation to use a compensator system for both manufacturers (wind farms/hydroelectric power plants/etc.) and consumers (residents/factories/etc.). These issues are regulated by official directives. EXERCISE STEPS: Some parameters are given related to your student ID numbers. These are: V1 = 160 V f1 = 70 Hz 1) A single-phase load has an active power of P = 2 kW at V1 V @f1Hz and the power factor is coso = 0.75. This motor is compensated to coso = 0.85 using a parallel capacitor (the load is modelled as series RL). Determine: a.…arrow_forward(a) Household appliances need to be individually fused to keep them safe in case of fluctuations. For the list of appliances below, work out the rating of the fuses needed for each one, bearing in mind that it needs to have "headroom" allowing for occasional working fluctuation, e.g. Dishwasher = 4.17 amps, therefore they come with 5 amp fuses. Please choose an answer from the list below. Remember to include your working. Lamp 0.2 kW Phone charger 60 W Woofers 430 W Hot plate 1.75 kW Air fryer 270 W Fridge 1.8 kW steam iron 680 W Gaming console 110 W (A) - 1 Amps (B) - 3 Amps (C) - 6 Amps (D) - 9arrow_forwardSubject: Quality engineering Mention examples of problems in real life, in which some characteristic or parameter can be applied to control/improve it. Whether it is a product or processarrow_forward
- With appropriate sketching and with your own words, explain the relationship between damping ratio and system response. ** Please don't copy from online sourcs give yours own explanation**arrow_forwardExplain in detail the difference between a Micro-Electronics / Photonics Engineer and an Electronic Circuit Design Engineer. Be specific and provide details. Please cite all your sources. • Could these engineers have projects in common? Give examples answer all twoarrow_forwardPlease help with the a, b, and carrow_forward
- Q1 One version of a space station is shown in Fig.1. It is critical to keep this station in the proper orientation toward the Sun and the Earth for generating power and communications. The orientation controller may be represented by a unity feedback system with an actuator and controller, such as: s+ 25 L(s) = G,(s)G(s)= s(s² +15s +75) Construct the state-space of this system using controllable canonical form; illustrate your answer with the aid of block diagram. Radar antenna Solar power panels Rockets Adjuster rockets Space shuttle Fig.1: Space Stationarrow_forwardA mixer circuit using an ideal operational amplifier (op-amp), A is shown in the Figure 1 below. Signal y(t) represents the output signal whilst signals x1(t) andx2(t) represent the input signals. All the resistors are ideal with same resistance, which is 10KQ. y(t) A x:(1) RI R3 x:(t) R2 Figure 1 (a) Determine the expression of the output signal, y(t) in terms of the input signals x,(t) and x2(t). (b) Determine whether the output signal, y(t) belongs to the system classifications below against the input signals x,(t) andx2(t): i. Time-varying or Time-invariant ii. Linear or Nonlinear ii. Instantaneous or Dynamic iv. Causal or Non-causal V. Open loop of Closed loop Provide the necessary mathematical calculations or statements to support your arguments.arrow_forwardc) A Power amplifier driven into compression experiences harmonic distortion and produces the harmonics shown below. 13 6 -3 -6 fi f2 f3 f4 Calculate the total harmonic distortion in the amplifier output, expressing your answer as a percentage. Power (dBm)arrow_forward
- i need ans within 8 minutes with draw happy emoji in the end my best wishes tonarrow_forwardQ.4) Voltage and current waveforms at the output side of a converter are shown in the below figure. Providing proper reasoning, calculate: (a) Effective active (or real) power, (b) Reactive power, and (c) System power factor. 200 150 100 50 0 30 20 10 0 -10 Voltage_V (V) Current_I (A) 2m www 2.5m 3m Time (s) 3.5m 4m 2arrow_forwardIn your own words, describe Ohm's law. Give two instances from the real world or from your educational career in which it would be used.arrow_forward
arrow_back_ios
SEE MORE QUESTIONS
arrow_forward_ios
Recommended textbooks for you
- Delmar's Standard Textbook Of ElectricityElectrical EngineeringISBN:9781337900348Author:Stephen L. HermanPublisher:Cengage Learning

Delmar's Standard Textbook Of Electricity
Electrical Engineering
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Cengage Learning