3)
Which type of current in a circuit will produce a magnetic field?
a) direct current only
b) alternating current only
c) both direct and alternating current
d) Neither direct and alternating current
c) both direct and alternating current
Because Ampere's Law, a magnetic field is produced whenever an electrical charge is in motion. So, both kind of currents produces a magnetic field when electrical current is flowing through a wire.
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put the correct terms with the correct pictures
Answer:
Mass: Choices 1, 2, 4, 6
Weight: Choices 3, 5, 7, 8
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Continue taking reading until the water starts to be boil
Answer:
pogggs
Explanation:
ii) One of the containers is wide and shallow. The other container is narrow and deep
Predict which container has the greater rate of cooling. Explain your answer.
Becky is helping her father push the car. Her father pushes with a force of 240 newtons. If the resultant force on the car is 300
Mewtons, how much force is Becky applying to help her father?
Wtff is this awnserrr
Answer:
Over 60N
Explanation:
If the resultant force is equal, the car will not move. In order for the car to move, Becky needs to apply a force that is stronger than 60N, since her dad is already pushing 240 (240+60=300), so anything over 60 from Becky would move the car.
You are preparing to attach wires in a 110 block. You want to connect the wires and trim off the excess at the same time
To connect the wires in a 110 block and trim off the excess at the same time, use a punch down tool with a notched blade and point the cut side of the tool towards the wire end.
A 110 block is used to terminate wiring in a cabling system. It is a type of punch down block. This block has a plastic base and have 50 slots for individual wires, meaning it can terminate 25 pairs.
A punch down tool is used insert wire into insulation displacement connectors present in punch down blocks such as 110 block and also in other electrical panels and modules.
Therefore, to connect the wires in a 110 block and trim off the excess at the same time, use a punch down tool with a notched blade and point the cut side of the tool towards the wire end.
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Is acceleration directly proportional to mass, or is it inversely proportional to mass?
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Answer:
The acceleration of an object as produced by a net force is directly proportional to the magnitude of the net force, in the same direction as the net force, and inversely proportional to the mass of the object
Answer:
It’s actually A) Inversely
Explanation:
A sprinter leaves the starting blocks with an acceleration of 3.2 m/s2. What is the sprinter’s speed 5 seconds later? If the sprinter is 68 kg, with what force will the sprinter be accelerating
Answer:
46
Explanation:
Answer:
Refer the above attachment
true or false? The electric field is always directed in the direction from a lower electric potential to a higher electric potential.
Answer:
true
Explanation:
have a good day ml
B
1 point
How much force is needed to accelerate a 2500 kg car at a rate of 4m/s²?
625 N
10,000 N
8,400 N
7,500 N
The force needed to accelerate a 2500 kg car at a rate of 4m/s² will be 10,000 N.Option B is correct.
What is force?Force is defined as the push or pull applied to the body. Sometimes it is used to change the shape, size, and direction of the body. Force is defined as the product of mass and acceleration. Its unit is Newton.
Given data;
Force,F = ?
Mass,m = 2500 kg
Acceleration,a = 4 m/s²
The force is found as;
F=ma
F=2500 kg × 4 m/s²
F= 10,000 N
The force needed to accelerate a 2500 kg car at a rate of 4m/s² will be 10,000 N.
Hence option B is correct.
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which of the following statements about stars is true?; if the sun is white-yellow, which of the following is a reasonable approximation of its temperature?; immediately above the sun's photosphere is the _______, which is the sun's lower atmosphere.; which of the following statements about the sun is true?; which of the following lists stars in order of increasing size?; betelgeuse star
From around 6500 K at the bottom to 4000 K at the top, the photosphere's temperature changes (11,000 and 6700 degrees F, 6200 and 3700 degrees C). Granulation covers a large portion of the photosphere.
The results of these many techniques indicate that the Sun's surface actually has a temperature of about 5,800 kelvin (9,980 degrees Fahrenheit [5,520 degrees Celsius]). The photosphere contains areas of darkness known as sunspots, where the temperature is comparatively lower—about 3800K. The photosphere is therefore the layer that is the coldest. It is 15 million K inside the sun (27 million degrees Fahrenheit). It is 5780 K at the surface (9900 degrees Fahrenheit).
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Two lenses, one converging with focal length 20.5 cm and one diverging with focal length − 10.0 cm , are placed 25.0 cm apart. An object is placed 60.0 cm in front of the converging lens.
Find the final image distance from second lens. Follow the sign conventions. Express your answer to two significant figures and include the appropriate units.
The final image distance from the second lens is -14.2 cm.
What is the distance of the final image from the second lens?To find the final image distance from the second lens, we need to consider the combined effect of both lenses. Given that the first lens is converging with a focal length of 20.5 cm and the second lens is diverging with a focal length of -10.0 cm, and the lenses are placed 25.0 cm apart, we can apply the lens formula and the concept of lens combinations.
The lens formula is given by:
1/f = 1/v - 1/u
where f is the focal length of the lens, v is the image distance, and u is the object distance. By applying this formula to the converging lens and the given object distance of 60.0 cm, we can calculate the image distance after the first lens.
Now, to find the image distance from the second lens, we need to consider the image formed by the first lens as the object for the second lens. The object distance for the second lens can be determined by subtracting the image distance of the first lens from the distance between the lenses.
Using the lens formula again, this time with the diverging lens and the calculated object distance, we can find the final image distance from the second lens.
The result is a final image distance of -14.2 cm, where the negative sign indicates that the image is virtual and formed on the same side as the object.
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5 decades is what fraction of a century?
The function of the thick outer coverings of insects and reptiles like rattlesnakes in desert biomes is to ____.
Answer:
Shed
Explanation:
Snakes have to shed, or else their skin will become really crusty and flaky. Especially the ones that live in a desert. The sun destroys their skin, as it isn't as strong as ours.
At what time of day do we use more energy? Why?
Answer:
The bottom line
That's because our internal clocks tend to use up the most calories from 4 p.m. to 6 p.m. and the least from 4 a.m. to 6 a.m., researchers concluded. If we're up late and eating when our bodies are using up fewer calories, those calories get stored instead, which can result in weight
Explanation:
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4. Predict whether a greater amount of energy will be
transferred as heat between 1 kg of water at 10 °C
and a freezer at -15 °C or between 1 kg of water at
60 °C and an oven at 65 °C.
The greater amount of energy is transferred during the first case and the difference in energies is: 84 × 10³ J
What is internal energy of a system?Internal energy refers to all energy within a particular system, including the kinetic energy of molecules and the energy stored in chemical bonds between molecules. The interaction of heat, work, and internal energy involves the transfer and conversion of energy whenever a change is made to the system.
The amount of heat (Q) gained or lost from the sample can be calculated using the formula Q = mcΔT. where m is the mass, c is the specific heat, and ΔT is the temperature change.
For the first case:
Q = mcΔT
Q = mc(T₁ - T₂)
m = 1 kg or 1000 g
c = 4.2 J g⁻¹/°C
T₁ = 10 °C
T₂ = -15 °C
Q₁ = 1000 × 4.2 × (10 -(-15))
Q₁ = 105 × 10³ J
For the second case:
Q = mcΔT
Q = mc(T₂ - T₁)
m = 1 kg or 1000 g
c = 4.2 J g⁻¹/°C
T₁ = 60 °C
T₂ = 65 °C
Q₂ = 1000 × 4.2 × (65 - 60)
Q₂ = 21 × 10³ J
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Because most particles fired at metal foil passed straight through, rutherford concluded that.
Because most particles fired at metal foil passed straight through, Rutherford concluded that only a small area of an atom is positively charged called the nucleus.
Rutherford's atomic model states that the atom is a small-sized particle that is composed of other fundamental objects i.e. electrons, protons, and neutrons.
In the core of an atom, there is an extremely dense, tiny-sized object called the nucleus which is positively charged.
Moreover, the nucleus is the central point containing all the mass of an atom around which negatively charged particles revolve in circular paths called electrons.
To put it simply, this model suggests that when electrons interacted with atoms in gold metal foil, only a few changed their path after colliding with the massive dense nucleus.
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A 4.6pf capacitor initially uncharged is connected in series with 7.50kohm resistor and an emf source with e=125v[negligible internal resistance]. what is the voltage drop across the capacitor after the circuit is completed?
Without the value of time, we cannot calculate the voltage drop across the capacitor.
The given parameters are:
Capacitance, C = 4.6pF
Resistor, R = 7.50 kΩ
EMF, E = 125 V
The formula to calculate the voltage drop across the capacitor in the circuit is
Vc = E (1 – e-t/RC) Where,
Vc = voltage across the capacitor E = EMF value R = resistance C = capacitance t = time
To obtain the voltage drop across the capacitor, the value of time is required. However, the time is not given in the question, which means we cannot calculate the voltage across the capacitor with the formula mentioned above.
Thus, it is not possible to calculate the voltage drop across the capacitor as the value of time is not given in the question.
A series circuit of an uncharged capacitor of capacitance 4.6 pF and a resistor of 7.50 kΩ is connected with an EMF source of 125V. The voltage drop across the capacitor is to be calculated using the formula
Vc = E (1 – e-t/RC)
Where Vc = voltage across the capacitor E = EMF value R = resistance
C = capacitance t = time
The time is not given in the question, and thus it is not possible to calculate the voltage drop across the capacitor.
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What is mass formula?
Answer:
The mass formula is given as
Mass = ρ × v
Where,
ρ = density and
v = the volume
The weight mass formula is given as
m = w / g
Where,
w= weight
m = mass
g = gravity
The mass formula is also given as
m = F / a
If acceleration itself is the gravity, then
M = F / g
Where,
F = force
G = gravity
According to Einstein’s mass-energy relation
m = (E / c2)
Where,
m = mass
E = energy
c = speed of light (3×108 m/s)
The kinetic energy mass formula is given as
K.E = ½ mv2
Where,
m = mass,
v = velocity.
Explanation:
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A curium-242 (Z= 96) can be produced by positive-ion bombardment when an alpha particle collides with which of the following nuclei? Note: A neutron is also a product of this bombardment, in addition to the curium-242.
A. Pu -239
B. U -239
C. Am-241
D. Cf-249
E. Pu-241
Answer:
A. Pu -239
Explanation:
An isotope is an element with the same atomic number but different mass number. most isotope are unstable, having short half life.
Curium-242 is an isotope produced when Plutonium 239 is bombarded by an alpha particle. This reaction between Plutonium 239 and alpha particle gives curium-242, neutron and a high amount of energy as the products.
Curium oxidizes easily, and it is a dangerous metal which can cause cancer initiation when absorbed by biological materials e.g bones or tissue.
Please help thank you so much!!
Answer:
Below
Explanation:
CO2 buildup during exercise stimulates respiration
(A) A small mass of 0.60 kg is rotated at the end of a string in a horizontal circle of radius 1.20 m. The string will break if the tension exceeds 60 N. What is the GREATEST frequency of revolution that is possible? (B) the same mass of 0.60 kg is now rotated at the end of another string at a constant speed, v, in a vertical circle of radius 1.20 m. the minimum tension in the string is 2.1N (I) state and explain where the tension in the string is maximum and minimum (ii) find the speed of the mass
(a) The maximum frequency of revolution is 4.0 rad/s.
b (i) The tension in the string is maximum when the object is at the top of its path and minimum when it is at the bottom of its path.
b (ii) The speed of the mass can be found using the minimum tension in the string is 2 m/s.
What is the maximum frequency of revolution?
The maximum frequency of revolution is given by the maximum tension in the string, which is 60 N.
T = mv² / r
where;
m is the mass of the object (0.60 kg), v is its linear speed, r is the radius of the circle (1.20 m).The linear speed is given by:
v = 2πrf
where;
f is the frequency of revolutionf = √T / (mr²))
f = √(60 / (0.60 x 1.20²))
f = 4.0 rad/s
(i) The tension in the string is maximum when the object is at the top of its path and minimum when it is at the bottom of its path. This is because the tension provides the centripetal force that keeps the object moving in a circular path.
(ii) The speed of the mass can be found using the minimum tension in the string, which is 2.1 N:
T = mv² / r = 2.1 N
Rearranging and solving for v, we get:
v = √(Tr / m)
v = √(2.1 x 1.20 / 0.60)
v = 2.0 m/s
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the winding cages in mine shafts are used to move workers in and out of the mines. these cages move much faster than any commercial elevators. in one south african mine, speeds of up to km/h are attained. the mine has a depth of m. suppose two cages start their downward journey at the same moment. the first cage quickly attains the maximum speed (an unrealistic situation), then proceeds to descend uniformly at that speed all the way to the bottom. the second cage starts at rest and then increases its speed with a constant acceleration of magnitude m/s2. how long will the trip take for each cage? which cage will reach the bottom of the mine shaft first?
Cage 2 will reach the bottom first. The time taken by cage one is 114.76 seconds and cage 2 is 0.32 seconds.
How to find which cage will reach first?
Given,
Mine depth Y = 2072 m
Cage speed 1 v = 65.0 km/h
Acceleration of Cage 2,
a = 4.00 102 m/s2
Solution:
We shall utilize the international system of measurements (SI) to interchange magnitudes using the unit system, which allows us to do so precisely and without the need for antiquities.
v = 65 km / h (1000m/1Km) (1hr/3600s)
= 18.06 m / s
The relationships between location, velocity, and acceleration can be discovered using kinematics.
Work each cage separately in this practice since there are two of them.
Cage 1
They suggest that it is moving at a constant speed, which we can determine using the laws of uniform motion.
v = d/t
v = d/v
t1 = 2072/18.06
t₁ = 114.76 s
Cage 2
Stop so that your starting velocity is zero.
y = v₀ t + ½ a t²
y = 0 + ½ a t²
\(t = \sqrt{2y/a} \\\\t2 = \sqrt{2*2072/4*10^{2} } \\\)
t₂ = 0.32 s
On comparing the time taken by cage 1 and cage 2, we can say that cage 2 will reach the ground first.
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A car accelerates from 0 m/s to 20 m/s in 5 seconds,
what is the acceleration of the car in m/s2?
Answer:
4
Explanation:
20-0=20 m/s
20/5=4 m/s2
A homemade 2 liter bottle (0.200 kg) rocket is launched up into the air during a physics class. On the way back down a parachute is deployed and creates a drag force from resistance. If the rocket is moving with an acceleration of 2m / (s ^ 2) , what is the drag force created by the parachute ?
The drag force created by the parachute can be calculated using the equation F = 0.5 * ρ * A * V2, where ρ is the density of the air, A is the area of the parachute, and V is the velocity of the rocket.
What is parachute?Parachute is an aircraft device used to slow down a person or object's fall during a jump or a descent from a significant height. The device consists of a canopy made of fabric or nylon which is attached to a harness. The canopy is designed to fill with air as it descends, thus providing drag to slow the descent. Parachutes are commonly used by skydivers and BASE jumpers, as well as by military forces to safely deploy personnel and equipment.
In this case, the density of the air is 1.225 kg/m3, the area of the parachute can be estimated based on the size of the rocket, and the velocity of the rocket can be calculated using the formula V = at, where a is the acceleration and t is the time it takes for the rocket to reach the ground.
Assuming the rocket is launched at an initial velocity of 0 and the time it takes to reach the ground is 5 seconds, then the velocity of the rocket is 10 m/s.
Therefore, the drag force created by the parachute is calculated as:
F = 0.5 * 1.225 kg/m3 * (estimated area of parachute) * (10 m/s)2
F = 0.5 * 1.225 kg/m3 * (0.1 m2) * (10 m/s)2
F = 6.1375 N
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9.
A 0.060 kg tennis ball hits the wall horizontally. The moment the ball hits the wall it accelerates at a rate of – 752 m/s2. What is the force that the ball applied to the wall?
Answer:
force = 45.12N
Explanation:
f = ma
f = 0.06 x 752 = 45.12N
(15 points) a 4000-w electric resistance heater is heating water in an insulated, constant diameter tube. if the water enters the heater steadily at 315 k and leaves at 360 k, determine the mass flow rate of water in kg/s.
The mass flow rate of water is 0.087 Kg/s.
Contact tube diameter means no pressure head drop.
P=C heating done at P=C.
MC(T₁ - T₂) = Q = W
M × 1.015 (360-315) = 4000
M = 4000 / 1.015 × \(10^{3}\) × 45
M = 0.087 Kg/s
Pressure is defined due to the fact the pressure of all the gasoline particle/wall collisions divided thru the vicinity of the wall: All gases exert strain ; it's far one of the important measurable portions of this phase of depend.
From the weather to air tour, strain performs a dramatic position in our lives. It plays especially vital roles at some point of chemical reactions. through manipulating stress, chemists can pressure chemical reactions to occur and the transitions among solids, beverages, and gases to boost up.
The primary unit of pressure is the pascal, described because the stress exerted with the useful resource of a pressure of one newton perpendicularly upon a place of one square meter.
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what is created when output does not meet the equilibrium quantity
When the output does not meet the equilibrium quantity in a market, a situation known as disequilibrium occurs. Disequilibrium refers to a state where there is an imbalance between the quantity demanded and the quantity supplied of a particular good or service. In this situation, two possibilities can arise: Excess Demand and Excess Supply.
Excess Demand: If the quantity demanded exceeds the quantity supplied, it creates a situation of excess demand or a shortage. Consumers are willing to purchase more of the product at the prevailing price than what is available in the market. This can lead to increased competition among consumers, rising prices, and a potential loss of potential sales for suppliers.
Excess Supply: On the other hand, if the quantity supplied exceeds the quantity demanded, it creates a situation of excess supply or surplus. Suppliers are producing more of the product than what consumers are willing to purchase at the prevailing price. This can lead to price reductions, decreased profitability for suppliers, and a buildup of unsold inventory.
In either case, the market is not in equilibrium, and there is a discrepancy between the quantity demanded and the quantity supplied. In response to disequilibrium, market forces such as price adjustments, changes in consumer behavior, or shifts in production levels may occur in an attempt to restore equilibrium.
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_____is a difference in electric potential energy.
Answer:
An electrical potential is a difference in electric potential energy.
Explanation:
Electric potential is a location-dependent quantity that expresses the amount of potential energy per unit of charge at a specified location. ... If the electric potential difference between two locations is 3 volts, then one coulomb of charge will gain 3 joules of potential energy when moved between those two locations.
The electric potential, or voltage, is the difference in potential energy per unit charge between two locations in an electric field.
The diagram shows two sets of vectors that result in a
single vector.
50 m
200 m
100 m
R
250 m
What are the first two steps for finding the magnitude
of the resultant vector?
find the square of the first horizontal vector and the
square root of the first vertical vector
find the square root of the first horizontal vector and
the square root of the second horizontal vector
find the sum of the two horizontal vectors and the
sum of the two vertical vectors
find the difference between the two horizontal
vectors and the difference between the two vertical
vectors
The first two steps for finding the magnitude of the resultant vector is find the sum of the two horizontal vectors and the sum of the two vertical vectors.
Resultant of two vectorsThe resultant of two vectors is determined from Pythagoras theorem is as shown below.
R² = a² + b²
First two steps of finding a resultant vectorsfind the sum of the two horizontal vectors and the sum of the two vertical vectors.Thus, the first two steps for finding the magnitude of the resultant vector is find the sum of the two horizontal vectors and the sum of the two vertical vectors.
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