Energization exercises
Author: m | 2025-04-24
Next in Energization Exercises. Meditation and Kriya Yoga Energization Exercises. Guding Yogananda’s Energization Exercises Septem. 2:52. Health and Healing ENERGIZATION EXERCISES: The Energization Exercises are a series of standing exercises developed by Paramahansa Yogananda to help prepare for meditation. They are practiced on
The Energization Exercises - amazon.com
Then comes sitting and lying floor poses. This helps the energy flow outwards from your spine and towards your extremities. The floor poses end with spine twists and stretches that refill the spinal axis with vital air and energy. The next inclusion in the sequence is of the inversion poses, that channel the energy towards your chest, throat, and brain; the upper chakras. Then the penultimate practice includes Savasana for deep relaxation. The Savasana helps inward withdrawal of your senses (pratyahara) which allows the energy to integrate with your brain. The last in the sequence comes, obviously, meditation. Meditation gives aesthetic perfection to the spiritual nature of the Ananda practice. Meditation assimilates all the benefits generated by the previous steps and channels towards the upliftment of your consciousness, stimulating your Anandamaya Kosha for inner bliss.2. Recharge with Energization ExercisesThe energization exercises used in Ananda Yoga were introduced by Yogananda, who mentioned in his autobiography that our body is like an electrical battery that can be recharged with energy at will, through a series of breath-movement synchronized exercises. Yogananda mentioned 39 such exercises that can teach us to control our Prana (life-force). These energization exercises also train the nervous system to support an increased flow of energy.39 energization exercises of Ananda yoga include techniques like double breathing, spinal rotation, 20-part body recharging, 4-part arm recharging, fencing, and such. The practitioners believe that these techniques help draw cosmic energy in the body, and direct it by a conscious will to recharge various parts of the body. The double breathing technique is a very interesting a powerful technique, that can enhance the oxygenation and detoxification of your blood. In double breathing you take a short and sharp breath in through your nose, followed by a long breath in, filling up your lungs. Then without a pause, make a short and sharp exhalation through your mouth and nose, and then a long exhalation emptying your lungs. 3. The potency of AffirmationIn Ananda yoga, each asana is assigned with an affirmation. The affirmations are considered to enhance the spiritual and life-force regulation benefits of the
Energization Exercises: A Series of Psychophysical Exercises
What are Time-Delay Relays?Some relays are constructed with a kind of “shock absorber” mechanism attached to the armature which prevents immediate, full motion when the coil is either energized or de-energized. This addition gives the relay the property of time-delay actuation.Time-delay relays can be constructed to delay armature motion on coil energization, de-energization, or both.Time-delay relay contacts must be specified not only as either normally-open or normally-closed but whether the delay operates in the direction of closing or in the direction of opening.The following is a description of the four basic types of time-delay relay contacts.Normally-Open, Timed-Closed Contact First, we have the normally-open, timed-closed (NOTC) contact. This type of contact is normally open when the coil is unpowered (de-energized). The contact is closed by the application of power to the relay coil, but only after the coil has been continuously powered for the specified amount of time.In other words, the direction of the contact’s motion (either to close or to open) is identical to a regular NO contact, but there is a delay in closing direction. Because the delay occurs in the direction of coil energization, this type of contact is alternatively known as a normally-open, on-delay:NOTC Timing DiagramThe following is a timing diagram of this relay contact’s operation: Normally-Open, Timed-Open ContactNext, we have the normally-open, timed-open (NOTO) contact. Like the NOTC contact, this type of contact is normally open when the coil is unpowered (de-energized), and closed by the application of power to the relay coil.However, unlike the NOTC contact, the timing action occurs upon de-energization of the coil rather than upon energization. Because the delay occurs in the direction of coil de-energization, this type of contact is alternatively known as a normally-open, off-delay:NOTO Timing DiagramThe following is a timing diagram of this relay contact’s operation: Normally-Closed, Timed-Open ContactNext, we have the normally-closed, timed-open (NCTO) contact. This type of contact is normally closed when the coil is unpowered (de-energized).The contact is opened with the application of power to the relay coil, but only after the coil has been continuously powered for the specified amount of time. In other words, the direction of the contact’s motion (either to close or to open) is identical to a regular NC contact, but there is a delay in the opening direction.Because the delay occurs in the direction of coil energization, this type of contact is alternatively known as a normally-closed, on-delay:NCTO Timing DiagramTheFull Energization Plus: Energization Exercises with Gyandev
Off delay timers have wide applications in the field of automation and control. The timer is an electrical device that controls the operation of the equipment by switching on and off according to the set time of the timer.There are mainly two types of timer- on delay timer and off delay timer. The star-delta starter uses a delay timer for delayed switching of the delta contactor. The timers are basic building blocks for the batch operation where the timer ensures the sequential operation.We will discuss the on delay timer and off delay timer in detail.Off-delay timer as its name suggests, the timer change over its state of contacts after a lapse of a set time period. On energization of the timer coil, the timer activates and changes its contact state from NO to close or NC to open. The timer keeps its contact in the same state as long as the power supply is available to its coil.For example, when the timer coil receives a power supply its NO contact changes to NC, and it will remain NC till the power supply is available to the timer’s coil. Now, if the supply to the timer’s coil is cut off, then the NC contact will change its state from NC to NO.Now, take an example of an off delay timer. Let the set delay time in the timer is 30 seconds. On powering the timer the contacts of the timer change from NO to NC and NC to NO instantly. The contacts will remain in this state as long as the timer receives the power. On removing power, the timer’s contacts will not changeovers, but remain in the same state till the lapse of the off-delay timing setting. In this case, it is 30 seconds. After off time over, the timer will change its contacts from NC to NO and vice versa.How does the off delay timer keep working after removing of the power supply?The off delay timer has capacitors in the timing circuit. On powering the timer. the capacitors charge and hold the charge till power is available to the timer. On removing the power of the timer, the capacitor charge continues to provide the power to the timer till the capacitor discharges to a particular level. The off delay timer setting in nothing but the rate of capacitor discharging. When the capacitor discharges up to the set time of. Next in Energization Exercises. Meditation and Kriya Yoga Energization Exercises. Guding Yogananda’s Energization Exercises Septem. 2:52. Health and HealingEnergization Exercises of Paramhansa YoganandaAnanda
Conveyor to give it adequate time to attain full belt speed before the next conveyor belt feeding it is started. Advanced Timer FeaturesThe older, mechanical time-delay relays used pneumatic dashpots or fluid-filled piston/cylinder arrangements to provide the “shock absorbing” needed to delay the motion of the armature.Newer designs of time-delay relays use electronic circuits with resistor-capacitor (RC) networks to generate a time delay, then energize a normal (instantaneous) electromechanical relay coil with the electronic circuit’s output.The electronic-timer relays are more versatile than the older, mechanical models, and less prone to failure.Many models provide advanced timer features such as: “one-shot” (one measured output pulse for every transition of the input from de-energized to energized) “recycle” (repeated on/off output cycles for as long as the input connection is energized) “watchdog” (changes state if the input signal does not repeatedly cycle on and off)."Watchdog" Timer RelaysThe “watchdog” timer is especially useful for monitoring of computer systems. If a computer is being used to control a critical process, it is usually recommended to have an automatic alarm to detect computer “lockup” (an abnormal halting of program execution due to any number of causes).An easy way to set up such a monitoring system is to have the computer regularly energize and de-energize the coil of a watchdog timer relay (similar to the output of the “recycle” timer). If the computer execution halts for any reason, the signal it outputs to the watchdog relay coil will stop cycling and freeze in one or the other state.A short time thereafter, the watchdog relay will “time out” and signal a problem.REVIEW: Time delay relays are built in these four basic modes of contact operation: 1: Normally-open, timed-closed. Abbreviated “NOTC”, these relays open immediately upon coil de-energization and close only if the coil is continuously energized for the time duration period. Also called normally-open, on-delay relays. 2: Normally-open, timed-open. Abbreviated “NOTO”, these relays close immediately upon coil energization and open after the coil has been de-energized for the time duration period. Also called normally-open, off delay relays. 3: Normally-closed, timed-open. Abbreviated “NCTO”, these relays close immediately upon coil de-energization and open only if the coil is continuously energized for the time duration period. Also called normally-closed, on-delay relays. 4: Normally-closed, timed-closed. Abbreviated “NCTC”, these relays open immediately upon coil energization and close after the coil has been de-energized for the time duration period. Also called normally-closed, off delay relays.Paramhansa Yogananda's Energization Exercises
Following is a timing diagram of this relay contact’s operation: Normally-Closed, Timed-Closed ContactFinally, we have the normally-closed, timed-closed (NCTC) contact. Like the NCTO contact, this type of contact is normally closed when the coil is unpowered (de-energized), and opened by the application of power to the relay coil.However, unlike the NCTO contact, the timing action occurs upon de-energization of the coil rather than upon energization. Because the delay occurs in the direction of coil de-energization, this type of contact is alternatively known as a normally-closed, off-delay:NCTC Timing DiagramThe following is a timing diagram of this relay contact’s operation:Time-Delay Relays Uses in Industrial Control Logic CircuitsTime-delay relays are very important for use in industrial control logic circuits. Some examples of their use include: Flashing light control (time on, time off): two time-delay relays are used in conjunction with one another to provide a constant-frequency on/off pulsing of contacts for sending intermittent power to a lamp. Engine auto start control: Engines that are used to power emergency generators are often equipped with “autostart” controls that allow for automatic startup if the main electric power fails. To properly start a large engine, certain auxiliary devices must be started first and allowed some brief time to stabilize (fuel pumps, pre-lubrication oil pumps) before the engine’s starter motor is energized. Time-delay relays help sequence these events for proper start-up of the engine. Furnace safety purge control: Before a combustion-type furnace can be safely lit, the air fan must be run for a specified amount of time to “purge” the furnace chamber of any potentially flammable or explosive vapors. A time-delay relay provides the furnace control logic with this necessary time element. Motor soft-start delay control: Instead of starting large electric motors by switching full power from a dead stop condition, reduced voltage can be switched for a “softer” start and less inrush current. After a prescribed time delay (provided by a time-delay relay), full power is applied. Conveyor belt sequence delay: when multiple conveyor belts are arranged to transport material, the conveyor belts must be started in reverse sequence (the last one first and the first one last) so that material doesn’t get piled on to a stopped or slow-moving conveyor. In order to get large belts up to full speed, some time may be needed (especially if soft-start motor controls are used). For this reason, there is usually a time-delay circuit arranged on eachExplanation And Practice Of Energization Exercises
Experience a life-transforming awakening of the peace, joy, and wisdom of the soul through the teachings of Paramahansa Yogananda, author of the spiritual classic Autobiography of a Yogi.The SRF/YSS app is for everyone—whether you are brand new to the teachings of Paramahansa Yogananda or have been immersing yourself in this great teacher’s wisdom for decades. It is also for anyone who wants to learn more about meditation, the science of Kriya Yoga, and practical ways to live a spiritually balanced life. Featuring:- Guided Meditations on Peace, Living Fearlessly, God as Light, Expansion of Consciousness, and more — with customizable meditation times from 15 to 45 minutes- Free access to live online meditations- SRF/YSS News and Event InformationFor those who are students of the SRF/YSS Lessons, the app includes the digital versions of your Lessons along with a rich variety of multimedia content to help you apply the SRF/YSS Kriya Yoga teachings in your daily life.Including:- Audio recordings of Paramahansa Yogananda- Guided meditations and visualizations led by SRF/YSS monastics- Classes on the SRF/YSS meditation techniques- Step-by-step video instruction in the SRF/YSS Energization ExercisesIf you are an SRF or YSS Lessons student, please use your verified account information to access the Lessons in the app.About SRF/YSSSelf-Realization Fellowship and Yogoda Satsanga Society of India are an invitation to the spiritual seeker to journey together on a life-transforming discovery of the soul. This journey embraces the “how-to-live” teachings of Paramahansa Yogananda, which embody the highest techniques for realizing who we truly are and show how to bring lasting peace, joy, and love into our lives and into the world. The goal of SRF and YSS is to offer not just a course of philosophical study, but the actual transmission of sacred knowledge through the living words of one of the great spiritual masters of the modern era.Yogoda Satsanga Society of India was founded in 1917 by Paramahansa Yogananda. Self-Realization Fellowship was founded by Paramahansa Yogananda in 1920, to spread the teachings of Kriya Yoga worldwide.. Next in Energization Exercises. Meditation and Kriya Yoga Energization Exercises. Guding Yogananda’s Energization Exercises Septem. 2:52. Health and Healing ENERGIZATION EXERCISES: The Energization Exercises are a series of standing exercises developed by Paramahansa Yogananda to help prepare for meditation. They are practiced onComments
Then comes sitting and lying floor poses. This helps the energy flow outwards from your spine and towards your extremities. The floor poses end with spine twists and stretches that refill the spinal axis with vital air and energy. The next inclusion in the sequence is of the inversion poses, that channel the energy towards your chest, throat, and brain; the upper chakras. Then the penultimate practice includes Savasana for deep relaxation. The Savasana helps inward withdrawal of your senses (pratyahara) which allows the energy to integrate with your brain. The last in the sequence comes, obviously, meditation. Meditation gives aesthetic perfection to the spiritual nature of the Ananda practice. Meditation assimilates all the benefits generated by the previous steps and channels towards the upliftment of your consciousness, stimulating your Anandamaya Kosha for inner bliss.2. Recharge with Energization ExercisesThe energization exercises used in Ananda Yoga were introduced by Yogananda, who mentioned in his autobiography that our body is like an electrical battery that can be recharged with energy at will, through a series of breath-movement synchronized exercises. Yogananda mentioned 39 such exercises that can teach us to control our Prana (life-force). These energization exercises also train the nervous system to support an increased flow of energy.39 energization exercises of Ananda yoga include techniques like double breathing, spinal rotation, 20-part body recharging, 4-part arm recharging, fencing, and such. The practitioners believe that these techniques help draw cosmic energy in the body, and direct it by a conscious will to recharge various parts of the body. The double breathing technique is a very interesting a powerful technique, that can enhance the oxygenation and detoxification of your blood. In double breathing you take a short and sharp breath in through your nose, followed by a long breath in, filling up your lungs. Then without a pause, make a short and sharp exhalation through your mouth and nose, and then a long exhalation emptying your lungs. 3. The potency of AffirmationIn Ananda yoga, each asana is assigned with an affirmation. The affirmations are considered to enhance the spiritual and life-force regulation benefits of the
2025-04-03What are Time-Delay Relays?Some relays are constructed with a kind of “shock absorber” mechanism attached to the armature which prevents immediate, full motion when the coil is either energized or de-energized. This addition gives the relay the property of time-delay actuation.Time-delay relays can be constructed to delay armature motion on coil energization, de-energization, or both.Time-delay relay contacts must be specified not only as either normally-open or normally-closed but whether the delay operates in the direction of closing or in the direction of opening.The following is a description of the four basic types of time-delay relay contacts.Normally-Open, Timed-Closed Contact First, we have the normally-open, timed-closed (NOTC) contact. This type of contact is normally open when the coil is unpowered (de-energized). The contact is closed by the application of power to the relay coil, but only after the coil has been continuously powered for the specified amount of time.In other words, the direction of the contact’s motion (either to close or to open) is identical to a regular NO contact, but there is a delay in closing direction. Because the delay occurs in the direction of coil energization, this type of contact is alternatively known as a normally-open, on-delay:NOTC Timing DiagramThe following is a timing diagram of this relay contact’s operation: Normally-Open, Timed-Open ContactNext, we have the normally-open, timed-open (NOTO) contact. Like the NOTC contact, this type of contact is normally open when the coil is unpowered (de-energized), and closed by the application of power to the relay coil.However, unlike the NOTC contact, the timing action occurs upon de-energization of the coil rather than upon energization. Because the delay occurs in the direction of coil de-energization, this type of contact is alternatively known as a normally-open, off-delay:NOTO Timing DiagramThe following is a timing diagram of this relay contact’s operation: Normally-Closed, Timed-Open ContactNext, we have the normally-closed, timed-open (NCTO) contact. This type of contact is normally closed when the coil is unpowered (de-energized).The contact is opened with the application of power to the relay coil, but only after the coil has been continuously powered for the specified amount of time. In other words, the direction of the contact’s motion (either to close or to open) is identical to a regular NC contact, but there is a delay in the opening direction.Because the delay occurs in the direction of coil energization, this type of contact is alternatively known as a normally-closed, on-delay:NCTO Timing DiagramThe
2025-04-21Conveyor to give it adequate time to attain full belt speed before the next conveyor belt feeding it is started. Advanced Timer FeaturesThe older, mechanical time-delay relays used pneumatic dashpots or fluid-filled piston/cylinder arrangements to provide the “shock absorbing” needed to delay the motion of the armature.Newer designs of time-delay relays use electronic circuits with resistor-capacitor (RC) networks to generate a time delay, then energize a normal (instantaneous) electromechanical relay coil with the electronic circuit’s output.The electronic-timer relays are more versatile than the older, mechanical models, and less prone to failure.Many models provide advanced timer features such as: “one-shot” (one measured output pulse for every transition of the input from de-energized to energized) “recycle” (repeated on/off output cycles for as long as the input connection is energized) “watchdog” (changes state if the input signal does not repeatedly cycle on and off)."Watchdog" Timer RelaysThe “watchdog” timer is especially useful for monitoring of computer systems. If a computer is being used to control a critical process, it is usually recommended to have an automatic alarm to detect computer “lockup” (an abnormal halting of program execution due to any number of causes).An easy way to set up such a monitoring system is to have the computer regularly energize and de-energize the coil of a watchdog timer relay (similar to the output of the “recycle” timer). If the computer execution halts for any reason, the signal it outputs to the watchdog relay coil will stop cycling and freeze in one or the other state.A short time thereafter, the watchdog relay will “time out” and signal a problem.REVIEW: Time delay relays are built in these four basic modes of contact operation: 1: Normally-open, timed-closed. Abbreviated “NOTC”, these relays open immediately upon coil de-energization and close only if the coil is continuously energized for the time duration period. Also called normally-open, on-delay relays. 2: Normally-open, timed-open. Abbreviated “NOTO”, these relays close immediately upon coil energization and open after the coil has been de-energized for the time duration period. Also called normally-open, off delay relays. 3: Normally-closed, timed-open. Abbreviated “NCTO”, these relays close immediately upon coil de-energization and open only if the coil is continuously energized for the time duration period. Also called normally-closed, on-delay relays. 4: Normally-closed, timed-closed. Abbreviated “NCTC”, these relays open immediately upon coil energization and close after the coil has been de-energized for the time duration period. Also called normally-closed, off delay relays.
2025-04-03Following is a timing diagram of this relay contact’s operation: Normally-Closed, Timed-Closed ContactFinally, we have the normally-closed, timed-closed (NCTC) contact. Like the NCTO contact, this type of contact is normally closed when the coil is unpowered (de-energized), and opened by the application of power to the relay coil.However, unlike the NCTO contact, the timing action occurs upon de-energization of the coil rather than upon energization. Because the delay occurs in the direction of coil de-energization, this type of contact is alternatively known as a normally-closed, off-delay:NCTC Timing DiagramThe following is a timing diagram of this relay contact’s operation:Time-Delay Relays Uses in Industrial Control Logic CircuitsTime-delay relays are very important for use in industrial control logic circuits. Some examples of their use include: Flashing light control (time on, time off): two time-delay relays are used in conjunction with one another to provide a constant-frequency on/off pulsing of contacts for sending intermittent power to a lamp. Engine auto start control: Engines that are used to power emergency generators are often equipped with “autostart” controls that allow for automatic startup if the main electric power fails. To properly start a large engine, certain auxiliary devices must be started first and allowed some brief time to stabilize (fuel pumps, pre-lubrication oil pumps) before the engine’s starter motor is energized. Time-delay relays help sequence these events for proper start-up of the engine. Furnace safety purge control: Before a combustion-type furnace can be safely lit, the air fan must be run for a specified amount of time to “purge” the furnace chamber of any potentially flammable or explosive vapors. A time-delay relay provides the furnace control logic with this necessary time element. Motor soft-start delay control: Instead of starting large electric motors by switching full power from a dead stop condition, reduced voltage can be switched for a “softer” start and less inrush current. After a prescribed time delay (provided by a time-delay relay), full power is applied. Conveyor belt sequence delay: when multiple conveyor belts are arranged to transport material, the conveyor belts must be started in reverse sequence (the last one first and the first one last) so that material doesn’t get piled on to a stopped or slow-moving conveyor. In order to get large belts up to full speed, some time may be needed (especially if soft-start motor controls are used). For this reason, there is usually a time-delay circuit arranged on each
2025-03-27What it’s?PracticeAnanda Yoga PosesAttaining AnandaBenefits Image: CanvaAnanda is a Sanskrit word that means ‘Bliss’, the bliss of your own higher Self. Unlike that bliss or happiness which we perceive by indulging in the mundane world, Ananda can be achieved only through inner awareness and peace. Based on the concept of inner peace, Ananda Yoga is a unique style of yoga that emphasizes spiritual development.What is Ananda Yoga? Ananda Yoga style is based on the teachings of the famous yogi Paramhansa Yogananda. It includes hatha yoga practices like Asanas, Pranayamas, meditation techniques, and Applied yoga philosophy. These practices combinedly establish a harmonious coexistence of your physical body, energy flow, emotional construct, and intellectual framework. The harmonious coexistence of different existential aspects of your being is the central focus of the Ananda Yoga system. It was founded in 1968 by Swami Kriyananda, one of the direct disciples of Paramhansa Yogananda. Yoga asanas used in the Ananda yoga sequence are different hatha yoga postures, which were at the heart of Yogananda’s teachings.This style of yoga focuses specifically on helping the practitioner attain inner bliss. Our Atman is said to be enclosed within 5 layers of our existence, the PanchKoshas. The layer Closest to the Atman is the Anandamaya Kosha which is integrally responsible for our inner bliss. Ananda Yoga helps you stimulate the Anandamaya Kosha, and takes you closer to the core spiritual essence of yogic practices.Unique Approach and PracticeImage: CanvaAnanda yoga at its core is a personal and inward experience, over an extensive physical routine. It uses the asana, pranayama, and Dhyana to regulate the energy flow and synchronize you with the universal consciousness. Here the asana practice is often modified to suit the practitioner’s needs and abilities, rather than forcing like in a traditional posture. Ananda yoga uses three unique approaches that set it apart from other yoga styles: the sequence, energization exercises, and affirmations.1. The Ananda SequenceThe Sequence used in the practice of Ananda yoga can itself be considered a dedicated tool for generating bliss. The sequence starts with the standing asanas to stimulate the prana flow along the spine.
2025-04-04Load. Friction lining wear is automatically compensated for.Torque range: 5,900 to 232,332 lb-ft (8 to 315 kNm)Typical applications: Dredge pumps, marine drives, auxiliary drives PDC CLUTCH The Eaton Airflex Pneumatic Disc Clutch has a simple design, utilizing an air tube to actuate the clutch’s plates. It features low friction wear, reduced heat generation, and easy maintenance.Torque range: 65,000 to 843,000 lb-in (7,345 to 95,254 Nm)Typical applications: Drawworks, dredging, recycling/shredding, logging equipment PLANOX PP CLUTCH Desch Planox PP clutches are pneumatically actuated. The design is simple, maintenance-free, and sturdy. PP clutches have a successful track record in applications with high engaging/disengaging frequency.Torque range: 95 to 59,521 lb-ft (130 to 80,700 Nm)Typical applications: Construction machinery, marine drives, energy generation, extruders SERVOX BRAKE The Desch Servox brake is spring applied, hydraulically released. It’s usually used as a static holding brake, but can function as a dynamic safety brake.Torque range: 8,113 to 22,126 lb-ft (11,000 to 30,000 Nm)Typical applications: Presses STANDARD VENT CLUTCH Wichita Clutch Standard Vent clutches are designed for reliable in-line power transmission. The simple air-tube design, with small air volume, speeds engagement and disengagement. It is ideally suited for large inertia loads where smooth controlled starts are needed.Torque range – 7,000 to 30,955,750 lb-in (790 to 3,497,530 Nm)Typical applications – Drilling rigs, Grinding Mills Spring Set Brakes Wichita Clutch Spring Set Brakes (SSB) are ideal for safe protection of process equipment. The units are similar to the Low Inertia units and designed to be free from effects of centrifugal force and self-energization. Low inertia start/stop parts reduce acceleration times which allows more cycles per minute as well as reducing heat generated.Torque range – 451 to 5,355,000 lb-in (51 to 605,016 Nm)Typical applications – Presses, Shears, Bulk Material Handling and General Industrial Equipment
2025-04-17