Explanation:
Initial velocity ( u ) = 10 m/s
Final velocity ( v ) = 40 m/s
Time taken ( t ) = 15 second
Now
[tex]acceleration = \frac{v - u}{t} \\ = \frac{40 - 10}{15} \\ = 2m /{s}^{2} [/tex]
Some electronic devices operate on a DC voltage of 7.5 V. To obtain 7.5 V DC from a 120-V (rms) AC line, first the voltage is dropped to 7.5 V (rms) AC by a transformer, and then the 7.5 V AC is converted to 7.5 V DC by a rectifier circuit involving diodes. Consider a device of resistance 15 Ω connected to the 7.5-V DC output of the rectifier. Assuming no power loss anywhere, what is the rms current, in amperes, in the secondary winding? Again assuming no power loss anywhere, what is the rms current, in milliamperes, in the primary winding?
The rms current, in amperes, in the secondary winding is 0.5 A and the rms current, in milliamperes, in the primary winding is 31.25 mA.
Output current
The rms current, in amperes, in the secondary winding is calculated as follows;
V = IR
I = V/R
I = 7.5 / 15
I = 0.5 A
Input currentThe rms current, in milliamperes, in the primary winding is calculated as follows;
[tex]\frac{I_p}{I_s} = \frac{V_s}{V_p} \\\\I_p = \frac{V_sI_s}{V_p}\\\\I_p = \frac{7.5 \times 0.5}{120} \\\\I_p = 0.03125\\\\I_p = 31.25 \ mA[/tex]
Thus, the rms current, in amperes, in the secondary winding is 0.5 A and the rms current, in milliamperes, in the primary winding is 31.25 mA.
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Black holes:
A are the brightest objects in space.
B are the most well understood objects in space.
C pulse in a regular pattern.
D None of the choices are correct.
Answer:
Black holes:
A are the brightest objects in space.
B are the most well understood objects in space.
C pulse in a regular pattern.
D None of the choices are correct.
Explanation:
A black hole is a region of space where the pull of gravity is so strong that nothing can escape. It's a "hole" in the sense that things can fall in, but not out of it. It is "black" in the sense that not even light can escape.
I hope I helped you! :)
4. What is the coefficient of x in the expression x + 3y + 2?
A. 0
B. 1
C. 2
D. 3
Answer:
B) 1
Explanation:
There is not a coefficient before x, so automatically the answer is 1
Answer :-
Hi there!
[tex]\:\mathsf\red{Your\:answer\:is\:B.\:(1)}[/tex]
Explantion :-We know
Coefficient is the number or value which should be putten in front of the variable given.
Here,
'x' is the variable. Before x, there is no number mentioned. So the number would be 1.
[tex]\:\sf\purple{Hope\:this\:helps\:you!\::)}[/tex]
An object has a momentum of 4,000 kg-m/s and a mass of 115 kg. It crashes into another object that has a mass of 100 kg, and the two objects stick together. If the momentum is conserved, what is the new velocity of the combined object? Round to the nearest hundredth.
Answer:
18.60 m/s
Explanation:
Original momentum = mv = 4000 with m = 115
after collision m = 115 + 100 = 215 kg
but the total momentum is still the same (conserved)
4000 = 215 v shows v = 18.60 m/s
Answer:
18.60
Explanation:
The system is released from rest at θ = 0° when a constant couple moment M = 100 N.m is applied. If the mass of the cable and links AB and BC can be neglected, and each pulley can be treated as a disk having a mass of 6 kg, determine the speed of the 10-kg block at the instant link AB has rotated θ = 90°. Note that point C moves along the vertical guide. Also, the cable does not slip on the pulleys.
For a system released from rest at θ = 0° when a constant couple moment M = 100 N.m is applied, the speed of the 10-kg block is mathematically given as
V=4.33m/s
What is the speed of the 10-kg block?Generally, the equation for the workdone is mathematically given as
W=T tehta<dtheta
W=100(90*\pi/180)
W=1.5707*100
W=1.57Nm
The change in potential energy across the pulley
dP=mgh
dp=10*9.81*111.8
dp=10.97J
For the thrid position, potential energy is
dP=mg(0.3)
dP=17.658J
dP'=17.658J-13.125
dP'=-4.532J
For 2nd position dP=0
The change in Kinectic energy across the pulley\
dK.E=0.5mv^2
For 1st
dk.E=0.5m(10)^2
2nd
dK.E=0.5Iw^2
dK.E=0.5(7.5*10^-3)(v^2/0.05)^2
3rd
2nd=3rd
In conclusion,
157.07=dKE+dP.E
157.07=5v^2+ (7.5*10^-3)(v^2/0.05)^2+10.97-4.53
V=4.33m/s
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5
What is the electric force between two particles that are 5m apart. One of the
particles has a charge of 100C while the other has a charge of 20C. (k=9x109)
k=
9=
92=
r=
Answer:
[tex]7.2 \times 10 {}^{11} newton[/tex]
Explanation:
[tex]the \: magnitude \: of \: the \: forc \: e \: can \: be \: calculated \: using \: coulombs \: formular \\ f = \frac{k \times q1 \times q2}{d {}^{2} } \\ f = \frac{9 \times 10 {}^{9} \times 100 \times 20 }{5 {}^{2} } \\ f = \frac{18000 \times 10 {}^{9} }{25 } \\ f = \frac{18000000000000}{25} \\ f = 7.2 \times 10 {}^{11} newton[/tex]
A wire is joined to points X and Y in the circuit diagram shown. A diagram of a circuit with a power source on the left. Directly above the power source is a dot labeled X and then a circle with an X in it. The circuit then splits with one path straight back to the power source and the other path has 3 circles with X in them labeled 2, 3, and 4 respectively. There is a point labeled Y between circles 2 and 3.A diagram of a circuit with a power source on the left. Directly above the power source is a dot labeled X and then a circle with an X in it. After the x are 4 different circles on the circuit with Xs in them labeled 1, 2, 3, and 4 respectively. There is a point labeled Y in between circles 2 and 3. There is a branch of the circuit from X to Y. How does the circuit change when the wire is added? A closed circuit occurs and makes all bulbs turn off. An open circuit occurs and makes all bulbs turn off. A short circuit occurs and makes bulbs 3 and 4 turn off but keeps bulbs 1 and 2 lit. A short circuit occurs and makes bulbs 1 and 2 turn off but keeps bulbs 3 and 4 lit.
Answer:
c thats the answer yep
Answer:
D.
Explanation:
The wire allows the current to follow the quickest path & will therefore follow the XY wire, restricting the energy source from reaching bulbs 1 and 2 which are beyond that wire.
Please answer by tonight!
Match the term to the definition.
Question 1 options:
As the amount of salt in water increases, the density of the water _________.
This is what moves forward and through a wave.
The distance from the crest of one wave to the crest of another.
The amount of dissolved salt in a liquid.
Water circulation created by prevailing wind systems. The Gulf Stream is an example.
The rising of ocean water bringing nutrients up from the deep.
Water circulation created by differences in density.
The cyclical process of the changing state and movement of water around the Earth through evaporation, condensation, and precipitation.
The length of open sea over which wind can blow steadily to create waves.
The type of energy possessed by moving water.
1.
The water cycle
2.
vapor transport
3.
salinity
4.
increases
5.
decreases
6.
surface currents
7.
Coriolis Effect
8.
deepwater currents
9.
trough
10.
wave period
11.
wavelength
12.
water molecules
13.
energy
14.
crest
15.
fetch
16.
electrical
17.
kinetic
18.
downwelling
19.
upwelling
Answer:
correct
Explanation:
all the answer are good cuc
A coil of wire with 226 circular turns of radius 3.20 cm is in a uniform magnetic field along the axis of the coil. The coil has R = 42.4 Ω
At what rate, in teslas per second, must the magnetic field be changing to induce a current of 0.155 A in the coil?
Answer:
R 44.4
Explanation:
Which term is defined as the change in the direction of light when it goes from one medium into a different medium?
Question 7 options:
Reflection
Refraction
Transmission
Absorption
Answer:
refraction
Explanation:
The following graph shows the force exerted on and the displacement of object being pulled
Find the work done to pull the object 7.0 m
The work done to pull the object 7.0 m is the total area under the graph from 0.0 m to 7.0 m, determined as 245 J.
Work done by the applied forceThe area under force versus displacement graph is work done.
The total work done by pulling the object 7 m, can be grouped into two areas;
First area, A1 = area of triangle from 0 m to 2.0 mSecond area, A2 = area of trapezium, from 2.0 m to 7.0 mA1 = ¹/₂ bh
A1 = ¹/₂ x (2) x (20)
A1 = 20 J
A2 = ¹/₂(large base + small base) x height
A2 = ¹/₂[(7 - 2) + (7-3)] x 50
A2 = ¹/₂(5 + 4) x 50
A2 = 225 J
Total work doneW = A1 + A2
W = 20 J + 225 J
W = 245 J
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Q5- Knowing now that your mood might affect your memory, what strategies could you employ to assist your memories and make sure that you forget less information when you are having a good time?
16) A car's position in relation to time is plotted on the graph. What can be said about the car during segment B?
A) The car travels for 80 seconds during segment B.
B) The car has come to a stop
and has zero velocity.
C) The car is traveling faster during segment B than in segment C.
D) The car is traveling with a constant
velocity due to the flat line
of the graph.
0)
Answer:
B The car has come to a stop and has zero velocity
Explanation:
I just did the Question
27. What do we mean when we say that a simple machine uses mechanical advantage to
make a "tradeoff" between force and distance?
Answer:
Work = Force * Distance definition of work
W = F * d
If one uses 1/2 the force to move an object, then he must move the force thru twice the distance to get the same work output.
CPR combines which two processes to keep a person alive until medical personnel arrive?
A. Rescue breathing and chest compressions
B. Chest compressions and RICE
C. Rescue breathing and AED
Your answer will be A. Rescue breathing and chest compressions.
Questions:
What are Newton’s Three Laws of Motion?
Explain what you learned about how the planets orbit around the Sun (Kepler’s Laws).
What are the Fundamental Forces?
Give some examples of the force vectors shown in force diagrams.
What is the normal force and what direction does the force arrow point on the force diagram?
What is the name of the force that is a combination of all forces that act on an object?
If you go to the Moon, explain what happens to your mass and weight.
Define mass and weight.
Does an object at rest have forces acting on it?
What is Inertia? What does it apply to?
You are pushing a book across a desk with a constant velocity. What are the forces acting on the book and in what direction? Are the y-forces equal in magnitude, why or why not? Are the x-forces equal in magnitude, why or why not? Explain using Newton’s Second Law. If you push on the book, according to Newton’s Third Law of Motion, what is the equal and reactive force?
The planets orbit the sun due to gravitational force of the sun on them which keep it in their orbits.
The Newton's three laws of motion are the following:The first law of motion is also called Law of Inertia, the second law of motion is the Law of Mass and Acceleration, and the Third Law of Motion that have action and reaction forces.
How the planets orbit around the Sun?The gravity of the Sun keeps the planets in their orbits. They stay and revolve in their orbits because there is no other force in the Solar System which can put pressure on them.
So we can conclude that planets orbit the sun due to gravitational force of the sun on them which keep it in their orbits.
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Why is simple machine important ?...
Answer: Simple Machines are useful and important because they reduce effort or extend the ability of people to form tasks beyond their normal capabilities . So they help us in our daily lives by reducing the amount of effort it takes for humans to perform certain tasks .
HOPE IT HELPS YOU .PLEASE GIVE BRAINLIEST .THANKS .
Show instructions
Question 5 (8 points)
Which is an example of kinetic friction?
friction between a car's wheels and the road as the car moves
friction between your shoes and the ground when you stand still
friction between a sticky note and the page of a book as it marks your pla
O friction between your skin and a pencil as it rests in your palm
0 0
UD
Answer:
The car and the road have kinetic friction.
Explanation:
Because the car is getting a force of friction because of the kinetic energy caused by the engine.
Estimate humanity’s current consumption of energy in one day (in Joule).
Based on data from world energy consumption, the estimated humanity’s current consumption of energy in one day is above 208 million joules per day.
What is energy consumption?Energy is the ability to do work. Therefore, energy consumption refers to the amount of energy used to do work.
Humans need energy for various purposes such as;
lightingheating operation of machinesfeeding, etc.Due to rapid growth on population as well as technology, the human energy consumption is on the increase.
In 2020, the world primary energy consumption was 71,4 GJ per person for a world population of about 7.7 billion people.
Therefore, the estimated humanity’s current consumption of energy in one day is above 208 million joules per day.
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An ideal engine (Carnot) is rated at 50 % efficiency when it is able to exhaust heat at a temperature of 20 ºC. If the exhaust temperature is lowered to 30 ºC, what is the new efficiency.
The new efficiency of the ideal engine rated at 50% is : 59%
Given data :
Inital exhaust temperature = 20ºC
Final exhaust temperature = - 30 ºC
The efficiency of an ideal engine can be calculated with the formula below
η = 1 - Texhaust / Tinput
Therefore :
Tinput = Texhaust / 1 - η ---- ( 2 )
where : Texhaust = 293 k , η = 0.50 ,
insert values into equation ( 2 )
Tinput = 293 / 1 - 0.50
= 586 k
Calculate the new efficiencyThe new efficiency of the ideal engine ;
η = 1 - T'exhaust / Tinput
= 1 - 243 / 586
= 1 - 0.41 = 59%
Hence we can conclude that the new efficieny is 59%
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Which of the following statements is not true with regards to the first law
of thermodynamics?
A
The first law of thermodynamics states that within an open
system, the total energy of that system will remain constant.
B
A change in internal energy E) can be calculated if you know
how much energy was transferred in the form of heat, and how
much energy was used or created in the form of mechanical
work (w).
•
With regards to heat flow (q), if a system is heated, the energy
will move from the surroundings to the system.
D
You can calculate the change of enthalpy (AH) of a system (the
change in the heat content of the system) by calculating the heat
flow of the system. The heat flow is represented by the letter (q).
Statement A is not true in regard to the first law of thermodynamics. The first law of thermodynamics states that within an open system, the total energy of that system will remain constant. Is incorrect statement.
What is the law of conservation of energy?According to the Law of conservation of energy. Energy can not be created nor be destroyed, it can transfer from one to another form.
The total energy is the sum of all the energies present in the system. The potential energy in a system is due to its position in the system.
The wrong statement is the first law of thermodynamics states that within an open system, the total energy of that system will remain constant.
The first law of the thermodynamics is valid only for the closed system.
The first law of thermodynamics states that within a closed system, the total energy of that system will remain constant.
Hence, statement A is not true in regard to the first law of thermodynamics
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A A body of mass 2.5kg and density 5oo0kgm^_3 fully Immersed in water the body w 3 The uptrust experienced by
Answer:
500 gm
Explanation:
There may be some typos in your question post, here is my best guess of what you posted:
2.5 kg / 5000 kg /m^3 = .0005 m^3 water displacement
.0005 m^3 = 500 cm^3 for water this equals 500 gm
A particle has a velocity that is 70 % of the speed of light and weighs 206.8 times the mass of an electron. Find the wavelength of this particle?
For a particle that has a velocity that is 70 % of the speed of light and weighs 206.8 times the mass of an electron, the wavelength of this particle is mathematically given as
W= 739.47
What is the wavelength of this particle?Generally, the equation for the 70 % of the speed of light is mathematically given as
70% of 3x10^8 = 2.1x10^8 m/s
Therefore
206.8*9.11x10^-31 = 1.88x10^-28 kg
In conclusion, The wavelength equation isTThe
wavelength= plancks constant / (mass*velocity)
Where
Plancks constant = 6.62x10^-34 m^2 kg/s
W=6.62x10^-34 / (1.88x10^-28/2.1x10^8)
W= 739.47
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I have to make a presentation about ultrasound diagnostic (it's for physics). Does someone know more about that topic? I need to explain how does ultrasound show insides of human body.
*sorry if my english isn't that good, im from Cro
Answer: Okay so I don't know much but from what I do know
Ultrasound emits sound waves into the body and what bounces back is what they can see the grey shape is what is closest. It's all micro sound waves and cannot hurt an unborn baby.
Explanation:
Not sure if this is correct but it is what I remember being told.
Hope this helps!
give name of any two devices used to measure the amount of matter contained in a container
Answer:
Measuring cup and graduated cylinder
Explanation:
These tools measure the volume of liquid matter. Measuring cups are used frequently in cooking and provide measurements generally in ounces and grams. A graduated cylinder is used in laboratories and in research and allows for a greater degree of precision in measuring the volume.
Help with these questions
Answer:
sorry im not good at math so sorry i cant help
Explanation:
Two masses m1 500 g and m2 1.5 kg on a frictionless, horizontal surface are connected by a light string. A force Fì with magnitude 5 N is exerted on m2 to the right. Assume the tension has
the same magnitude at every point in the string, and neglect air resistance.
(a) Since the masses are connected by a string, they are constrained to move together. Express this constraint as an equation relating the accelerations of the two masses.
(b) Draw free-body diagrams for the two masses and write down the horizontal component of the net force on each mass.
(c) Use Newton’s 2nd law and the constraint from part (a) to find the acceleration of both masses and the magnitude T of the tension in the string.
(a) The equation relating to the acceleration of the two masses is a = F/(m₁ + m₂).
(b) The acceleration of both masses is 2.5 m/s².
(c) The magnitude of the tension in the string is 1.25 N.
Equation relating the accelerations of the two massesThe equation relating to the acceleration of the two masses is given as;
F - T = m₂a ---- (1)
T = m₁a ---- (2)
F - m₁a = m₂a
F = m₁a + m₂a
F = a(m₁ + m₂)
a = F/(m₁ + m₂)
Free body diagram (FBD)→ ← →
T T F
Acceleration of both massesThe acceleration is calcuated as follows;
a = F/(m₁ + m₂)
a = 5/(0.5 + 1.5)
a = 5/(2)
a = 2.5 m/s²
Tension in the stringT = m₁a
T = 0.5 x 2.5
T = 1.25 N
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If the slump and subsequent flow continue migrating uphill and more material flows downhill, which of the following are a hazard? (select all that apply)
A. The homes will be damaged.
B. The roadway will be damaged.
C. Utility power poles will be damaged.
D. More agricultural land will be unfarmable.
The hazard from more material flows downhill are:
The roadway will be damaged.More agricultural land will be unfarmable.Utility power poles will be damagedWhat is Hazard?This is a condition which has the potential to cause damage or injury to a person or property.
Materials flowing downward means that there will erosion which may damage the roads, land for agriculture and utility poles.
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Consider the collision between the moving cue ball and the red 15 ball
that is at rest on the table pool. All BUT ONE statement describes what
occurs when the cue ball collides with the 15 ball,
A)
Each ball experiences an equal force directed in
opposite directions,
B)
The 15 ball experiences a rightward force that causes
it to speed up.
The acceleration of the 15 ball is greater than that of
the cue ball.
The moving cue ball experiences a leftward force
that causes it to slow down.
9
D)
From the laws of Newton, the balls experiences an equal force directed in opposite directions.
What is collision?Collision is said to occur when on object bumps into another. Collisions are described by the law of conservation of linear mometum which ststes that momentum is neither created nor destroyed.
The question is incomplete hence we can not fully answer the question. However, from the laws of Newton, the balls experiences an equal force directed in opposite directions.
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The magnetic flux through a coil of wire containing two loops changes from -65 Wb to +47 Wb in 0.38 s What is the emf induced in the coil? Express your answer using two significant figures
Hi there!
Recall Faraday's Law:
[tex]\epsilon = N\frac{d\Phi_B}{dt}[/tex]
ε = Induced emf (V)
N = Number of Loops
φ = Magnetic Flux (Wb)
t = time (s)
Thus, the induced emf is equivalent to the number of loops of the coil times the rate of change of the magnetic flux bounded by the area of the coil, so:
[tex]\epsilon = 2 \cdot \frac{47 - (-65)}{0.38} = 2 \cdot \frac{112}{0.38} = 589.47V =\boxed{ 5.9 \times 10^2 V}}[/tex]
**This is the magnitude of the induced emf. With Lenz's Law, however, the answer would be negative, which just indicates it is a resistive emf.