The schematic of formation of vortex ring T1.

Slides:



Advertisements
Similar presentations
Focus: Detecting vortices/turbulence in pure superfluid 4 He at T
Advertisements

AND, OR and NOT. The AND gate needs to be both on, So number wise both 1. So then you will get a 1 as you can see in the last image on the right, If 1.
Figure 3.1. Schematic showing all major components of an SPM. In this example, feedback is used to move the sensor vertically to maintain a constant signal.
Arrow Math Follow The Arrows Around The Grid. 25 Grid
One Hand Tie - Step 1 Note that the short end has been placed beneath the tubing and is held in the right hand, away from the surgeon. The long strand.
Envelope generated by the interaction of the EODs of three weakly electric fish. Envelope generated by the interaction of the EODs of three weakly electric.
From: Perceptual entrainment of individually unambiguous motions
Sampath Koppole, Jeremy C. Smith, Stefan Fischer  Structure 
Schematic diagram of the three circuits analysed in this work.
كيــف تكتـب خطـة بحـث سيئـة ؟؟
الدكتـور/ عبدالناصـر محمـد عبدالحميـد
Comparison of the model incorporating daily dose to that incorporating Cmax. Comparison of the model incorporating daily dose to that incorporating Cmax.
Evaluation of models incorporating the base covariates.
Hierarchical structure in the yeast transcription regulatory network.
Solving Compound Inequalities
What number is the arrow pointing at?
The limiting, degrading entity hypothesis
Comparative analysis of Aeromonas sp.
Left: atrial activation in typical atrial flutter (AFL).
Whole-genome comparison of E
Balanced vs Unbalanced Forces
Structure of hStau1 dsRBD3-4 in complex with ARF1 SBS.
Topologies, synthetic implementations and expression profiles of the networks studied Topologies, synthetic implementations and expression profiles of.
Schematic diagram of the experimental setup.
Average forces for fins with fin rays of different stiffnesses at a flow rate of 90 mm s–1 and beat frequencies of 0.50, 0.65, 1.00, 1.30, and 1.60 Hz.
Breathing motion of myoglobin: the superposed Mb structures before laser illumination (orange) and after 750 min of laser illumination (yellow) at 140.
Fig. 1 Movement percepts for all participants.
The Lyapunov stability of the model depends on length feedback.
Effect of 20E on locomotion behavior.
Three-dimensional vortical structure visualized by the iso-surfaces of the q criterion for inviscid (left column) and viscous (Re=4000) (middle column)
24 h mean of body temperature plotted against 24 h mean of air temperature (A), and 24 h amplitude of body temperature plotted against 24 h range of air.
Swimming paths of Freja in no fish (A) and fish trials (B) with no eyecups and when blindfolded (with eyecups). Swimming paths of Freja in no fish (A)
Click interval of typical click trains emitted by Freja (A) and Freja blindfolded (B) during no fish trials and fish trials. Click interval of typical.
Estimates of the kinematics of the medio-lateral widths of the I3 muscle during biting using the three-dimensional kinematic model. Estimates of the kinematics.
The interaction of gecko toe pads with the substrate in the presence and absence of water. The interaction of gecko toe pads with the substrate in the.
Bivariate plots of mean total scratches and mean total pits for natural grazers. Bivariate plots of mean total scratches and mean total pits for natural.
Visualizations of medusa flow currents.
Body temperature (Tb) in Swiss mice exposed to a decrease in ambient temperatures. Body temperature (Tb) in Swiss mice exposed to a decrease in ambient.
Numerical simulations.
Flexion–extension torques acting about the distal interphalangeal (DIP) joint during walking, trotting and cantering. Flexion–extension torques acting.
(A) Subvertebral sac pressure and brachial sac pressure during a breathing sequence in one C. marinus. (A) Subvertebral sac pressure and brachial sac pressure.
Primary feeding platform.
Antero-posterior, dorso-ventral and medio-lateral dimensions of the odontophore during biting versus swallowing. Antero-posterior, dorso-ventral and medio-lateral.
EpiDEG efficiently degrades GFP-tagged proteins that localize to different subcellular localizations. epiDEG efficiently degrades GFP-tagged proteins that.
Examples of the different position of the centre of head rotation (CR)
Flexion–extension torques acting about the antebrachiocarpal (AC) joint during walking, trotting and cantering. Flexion–extension torques acting about.
CoP shift against initial CoP–XcoM distance, for all unperturbed strides of subject 1 (red dots and green crosses), for strides with a left push at 90%
(A) Mean CoP and maximum XcoM during the stride as a function of push magnitude. (A) Mean CoP and maximum XcoM during the stride as a function of push.
Flexion–extension torques calculated for the elbow joint during walking, trotting and cantering. Flexion–extension torques calculated for the elbow joint.
Relationship between testes mass and testosterone (T) levels before handling (baseline), post-handling, and after a GnRH injection. Relationship between.
Body contours over one tail-beat of (A) an eel and (B) a mullet swimming steadily at 1.4Ls-1 (slip , where L is body length). Body contours over.
Midlines of a steadily swimming eel over approximately two tail-beat cycles in an earth-bound frame of reference (swimming speed U=0.121 m s-1, sequence.
Behavior rates for descenders (A), non-descenders (B) and controls (C) before and during the experimental trial. Behavior rates for descenders (A), non-descenders.
Schematic of experimental setup and screen captures from swimming.
Variation in the flow speeds adjacent to the eel's body over one tail-beat cycle. Variation in the flow speeds adjacent to the eel's body over one tail-beat.
Leeches require closed loop sensory feedback to localize stimuli.
Performance of Gr28b(D) and dTrpA1GAL4 at increasing temperatures with changing location of the comfortable tile. Performance of Gr28b(D) and dTrpA1GAL4.
SpC3 concentrations in coelomic fluid (CF) collected from sea urchins at various times before and after the injection of LPS or ASW. Data are shown as.
Phylogenetic analysis of AquK2P.
Mean CO2 release rates (averaged across all individuals tested) versus PO2 for each species of (A) tenebrionid and (B) scarabaeid. Mean CO2 release rates.
Average forces for fins with fin rays of different stiffness at a fin-beat frequency of 1.00 Hz, and flow rates of 0, 90, 180, and 270 mm s–1. Average.
Instances during the time course of wake generation behind a steadily swimming eel (speed U=0.121 m s-1, sequence 1, see Table 1). Instances during the.
Diagram of the comb showing the location of the stimulus probe and the three rows of cells from the walls of which measurements were taken. Diagram of.
Flow field adjacent to an eel (body length L=0
Schematic representation of the hydrolysis of amorphous and microcrystalline cellulose by noncomplexed (A) and complexed (B) cellulase systems. Schematic.
Bacteriophage DNA Packaging
SCLC PDX models recapitulate patient responses to an experimental therapy. SCLC PDX models recapitulate patient responses to an experimental therapy. A,
In vivo shRNA screening strategy.
Sequence alignment of colicin lysis proteins.
The effect of changing the number of acute stroke units on average and maximum travel times. The effect of changing the number of acute stroke units on.
Presentation transcript:

The schematic of formation of vortex ring T1. The schematic of formation of vortex ring T1. The initial vortex loop T1 is shown on the left. The motion of the tail in the opposite direction creates the vortex loop T2, which is connected to the initial vortex loop T1 (middle). The vortex loop T1 pinches off from T2 to form a vortex ring (right). The shaded area is the tail and the arrows indicate the direction of the tail motion or the rotation of the vorticity. Iman Borazjani et al. J Exp Biol 2012;215:671-684 © 2012.