Strong relationships were identified between cadence and peak vertical acceleration (r = .96, P , .05) and peak loading rate (r = .98, P , .05). Regression analyses indicated cadences of 157 ± 12 steps/min (2.6 ± 0.2 steps/s) and 122 ± 10 steps/min (2.0 ± 0.2 steps/s) corresponded with the 4.9 g peak vertical acceleration and 43 BW/s peak loading rate thresholds, respectively. ...
Abstract: We study the effects of acceleration on fermionic Gaussian states of localized modes of a Dirac field. We consider two wave-packets in a Gaussian state and transform these to an accelerated frame of reference. In particular, we formulate the action of this transformation as a fermionic quantum channel. Having developed the general framework for fermions, we then investigate the entanglement of the vacuum, as well as the entanglement in Bell states. We find that with increasing acceleration vacuum entanglement increases, while the entanglement of Bell states decreases. Notably, our results have an immediate operational meaning given the localization of the modes ...
Tri-axial accelerometers are high-level output transducers requiring no additional amplification since the amplifier is built into the transducer. They
Reference: Avenirova E.D., Savin B.M., Sytinskii Ia., Effect of oxygen starvation and acceleration on the glutaminic and gamma-aminobutyric acid content in the brain tissue, Voprosy meditsinskoi khimii, 1964, vol: 10(6), 595-600 ...
Background: Aspects of physical functioning, including balance and gait, are affected after surgery for lower limb musculoskeletal tumors. These are not routinely measured but likely are related to how well patients function after resection or amputation for a bone or soft tissue sarcoma. Small, inexpensive portable accelerometers are available that might be clinically useful to assess balance and gait in these patients, but they have not been well studied.. Questions/purposes: In patients treated for lower extremity musculoskeletal tumors, we asked: (1) Are accelerometer-based body-worn monitor assessments of balance, gait, and timed up and go tests (TUG) feasible and acceptable? (2) Do these accelerometer-based body-worn monitor assessments produce clinically useful data (face validity), distinguish between patients and controls (discriminant validity), reflect findings obtained using existing clinical measures (convergent validity) and standard manual techniques in clinic (concurrent ...
Contact Instrumented Sensor Technology for acceleration data loggers, recorders and monitors for a variety of monitoring applications.
Dive into the research topics of Mobile sensor agent to acquire acceleration data for structural health monitoring. Together they form a unique fingerprint. ...
1] The first in situ sounding of a post-seismic infrasound wavefront is presented, using data from the GOCE mission. The atmospheric infrasounds following the great Tohoku earthquake (on 11 March 2011) induce variations of air density and vertical acceleration of the GOCE platform. These signals are detected at two positions along the GOCE orbit corresponding to a crossing and a doubling of the infrasonic wavefront created by seismic surface waves. Perturbations up to 11% of air density and 1.35 × 10 − 7 m/s2 of vertical acceleration are observed and modeled with two different solid-atmosphere coupling codes. These perturbations are a due to acoustic waves creating vertical velocities up to 130 m/s. Amplitudes and arrival times of these perturbations are reproduced respectively within a factor 2, and within a 60 s time window. Waveforms present a good agreement with observed data. The vertical acceleration to air density perturbation ratio is higher for these acoustic waves than for gravity ...
Abstract. Pine Island Glacier, Antarctica, has been undergoing several related changes for at least two decades; these include acceleration, thinning and grounding line retreat. During the first major ground-based study between 2006 and 2008, GPS receivers were used to monitor ice flow from 55 km to 171 km inland, along the central flowline. At four sites both acceleration and thinning rates over the last two years exceeded rates observed at any other time over the last two decades. At the downstream site acceleration was 6.4% over 2007 and thinning was 3.5±0.5 ma−1. Acceleration and thinning have spread rapidly inland with the acceleration 171 km inland at 4.1% over 2007, greater than any measured annual flow increase along the whole glacier prior to 2006. Increases in surface slope, and hence gravitational driving stress, correlate well with the acceleration and no sustained change in longitudinal stress gradient is needed to explain the force balance. There is no indication that the ...
MR Safe accelerometer for tri-axial measurements and subject feedback. This high level output transducer (±5 G) is optimal for measuring accelerations when performing slow movements, subtle gestures, or tapping responses and can be used as a feedback transducer for subjects in the MRI. The transducer provides three outputs, simultaneously measuring acceleration along the X-, Y- and Z-axes
A simply formed speed change transmission device capable of continuously changing an engine drive force in each of speed ranges classified in multiple stages by utilizing a continuously variable transmission (10) and planetary transmission mechanisms (P1, P2, P3), and clutches (C1, C2). The speed change transmission device includes a main transmission device (B) for synthesizing an output from the continuously variable transmission (10) with a drive force from an engine (1) by the first, second, and third planetary transmission mechanisms (P1, P2, P3), and outputting the synthesized drive force from an output shaft (41) through a clutch part (C) having the first and second clutches (C1, C2). The speed change transmission device further includes an auxiliary transmission device (20) for changing and outputting the drive force of the main transmission device (B) from the output shaft (41).
A high acceleration cockpit design test/evaluation program was conducted, using a full scale design aid. Alternate configurations were compared using this full scale design aid in a formally structured evaluation including mission related task elements. Test criteria considered evaluation of control/display and cockpit design options, including seat location, motion, and pilot anthropometry, with a balance between the physical and operational test measures and objectives using Air Force provided pilot subjects. (Author)*Jet fighters
Last week benchmarks were published of Intel`s New Sandy Bridge Acceleration architecture (SNA) that showed several performance improvements for 2D and 3D, but the new acceleration architecture still wasn`t mature with a few regressions compared to the normal UXA back-end. While the focus of this SNA support is on speeding up operations for Sandy Bridge (SNB) and forthcoming Ivy Bridge (IVB) hardware, SNA is supported for older Intel graphics processors too. Here are some benchmarks of the Sandy Bridge New Acceleration architecture when using the Ironlake and Gen3 back-ends. Business software left the office and moved into the home long ago. If youve ever lost the password to Word, ZIP or PDF file in misguided attempt to protect data from prying eyes, this guide to Decrypting Document and File Passwords is a life saver. PCSTATS Tips ...
You can run a series of commands on your Terminal to disable the mouse acceleration feature in Mac OS X. In this regard, here are the steps you need to follow: Step 1: Open the Terminal on your Mac computer-from the Utility folder in Applications. Alternatively, you could just press the Command + Spacebar keys combination on your keyboard to open the Spotlight Search bar.. Now type Terminal into this search bar then press the Enter key to run the search. Select Terminal-the first entry on the search results-to launch the utility tool.. Step 2: Check the current mouse acceleration setting on your computer by running the following command (Just type the command into the Terminal and then press the Enter key on the keyboard to run it):. defaults read .GlobalPreferences com.apple.mouse.scaling. This will display a hidden preference setting that you can change by altering the number at the end. If the mouse acceleration feature is enabled, the above command should display a value between 0 and 3. ...
Accumulated signal noise will cause the integrated values to drift from the true value when measuring orientation angles of wearable sensors. This work proposes a novel method to reduce the effect of this drift to accurately measure human gait using wearable sensors. Firstly, an infinite impulse response (IIR) digital 4th order Butterworth filter was implemented to remove the noise from the raw gyro sensor data. Secondly, the mode value of the static state gyro sensor data was subtracted from the measured data to remove offset values. Thirdly, a robust double derivative and integration method was introduced to remove any remaining drift error from the data. Lastly, sensor attachment errors were minimized by establishing the gravitational acceleration vector from the acceleration data at standing upright and sitting posture. These improvements proposed allowed for removing the drift effect, and showed an average of 2.1°, 33.3°, 15.6° difference for the hip knee and ankle joint flexion/extension angle,
The rank list will be prepared on the basis of the results declared by the university. So, the candidates can also check the RINL VSP Jr Medical Officer Sectional Cutoff. www.imu.ac.in IMU CET Result … Campus Placements Campus Placement Brochure 2019-20. The cut-off will be prepared on the basis of number of applicants applied for counselling, difficulty level of exam and availability of seats in the institutions. Please give the cutoff mark for general UG category. IMU CET Result 2018. I have12150 rank in imu cet can i take admission in any government collage for marrin enginiring course 4year. IMU CET 2020 exam is organised in online mode only. there is my name in the qualified student list, my rank is 319 mba/msc . The IMU has its headquarters at Chennai and has its regional campuses at Mumbai, Cochin, Visakhapatnam, and Kolkata and the new headquarters building is being worked at 300 acres of land arrive apportioned to IMU at Semmancherry, Chennai which lies in the middle of East Coast ...
Contents of the 15 Chapter for This High Performance Inertial Sensors Market Study:-. Chapter 1: to describe Global High Performance Inertial Sensors Market Introduction, product scope, market overview, market opportunities, market risk, market driving force;. Chapter 2: to analyze the top manufacturers of Global High Performance Inertial Sensors Market, with sales, revenue, and price of Global High Performance Inertial Sensors Market, in 2016 and 2017;. Chapter 3: to display the competitive situation among the top manufacturers, with sales, revenue and market share in 2016 and 2017;. Chapter 4: to show the Global High Performance Inertial Sensors market by regions, with sales, revenue and market share of Global High Performance Inertial Sensors Market, for each region, from 2012 to 2017;. Chapter 5, 6, 7, 8 and 9: to analyze the key regions, with sales, revenue and market share by key countries in these regions;. Chapter 10 and 11: to show the market by type and application, with sales market ...
Thinking Science, the Cognitive Acceleration through Science Education (CASE) curriculum, is a program designed for 11-14 year olds (in the first two years of secondary school) which encourages them to reflect on their own thinking and to develop their reasoning power in tackling novel problems. This study presents results that represent the first large-scale long-term test of the process of raising standards in schools by concentrating on a thinking skill approach. Overall, about 4,500 pupils in the CASE schools have been featured in the data in this report. Seventeen schools data have been compared with added-value data from a greater number of control schools. Results indicate that the CASE methodology, even when tried for the first time, produced an average increase on the order of half as much gain in the percentage of pupils obtaining C-grade and above at the GCSE examination (an increase from a National average of 44% to 63% for science in 1996, and an increase from 43% to 57% in ...
Can anyone run Mpv with hardware acceleration? mpv --hwdec=vdpau [FILE] I m facing the following error need to call Mpv from terminal : libva info: Trying to open usr lib64 dri nvidia_drv_ libva error: usr lib64 dri nvidia_drv_ has no function __vaDr..
SANTA CLARA, Calif., February 6, 2013 - Silver Peak Systems , a leader in accelerating data over distance, today announced its first multi-gigabit-per-second (Gbps) data acceleration solution for Windows Server Hyper-V environments. Silver Peaks virtual offering for Windows Server Hyper-V now extends from small remote offices to large data centers, giving Microsoft Corp.s
‎B2B Revenue Acceleration: The Podcast for Technology Leaders is a podcast dedicated to helping software executives stay on the cutting edge of sales and marketing in their industry. Whether youre looking to follow emerging trends in B2B technology, learn from venture capital experts about their lat…
Figure Electromechanical Market Size and CAGR 2013-2018 (Million USD) Figure Electromechanical Market Size and CAGR 2013-2018 (Volume) Figure Electromechanical Market Forecast and CAGR 2019-2025 (Million USD) Figure Electromechanical Market Forecast and CAGR 2019-2025 (Volume) Figure Digital Market Size and CAGR 2013-2018 (Million USD) Figure Digital Market Size and CAGR 2013-2018 (Volume) Figure Digital Market Forecast and CAGR 2019-2025 (Million USD) Figure Digital Market Forecast and CAGR 2019-2025 (Volume) Figure Other Digital Meters Market Size and CAGR 2013-2018 (Million USD) Figure Other Digital Meters Market Size and CAGR 2013-2018 (Volume) Figure Other Digital Meters Market Forecast and CAGR 2019-2025 (Million USD) Figure Other Digital Meters Market Forecast and CAGR 2019-2025 (Volume) Figure Power Industry Market Size and CAGR 2013-2018 (Million USD) Figure Power Industry Market Size and CAGR 2013-2018 (Volume) Figure Power Industry Market Forecast and CAGR 2019-2025 (Million USD) ...
Figure Emulsifiers Market Size and CAGR 2013-2018 (Million USD) Figure Emulsifiers Market Size and CAGR 2013-2018 (Volume) Figure Emulsifiers Market Forecast and CAGR 2019-2025 (Million USD) Figure Emulsifiers Market Forecast and CAGR 2019-2025 (Volume) Figure Enzymes Market Size and CAGR 2013-2018 (Million USD) Figure Enzymes Market Size and CAGR 2013-2018 (Volume) Figure Enzymes Market Forecast and CAGR 2019-2025 (Million USD) Figure Enzymes Market Forecast and CAGR 2019-2025 (Volume) Figure Oxidizing Agents Market Size and CAGR 2013-2018 (Million USD) Figure Oxidizing Agents Market Size and CAGR 2013-2018 (Volume) Figure Oxidizing Agents Market Forecast and CAGR 2019-2025 (Million USD) Figure Oxidizing Agents Market Forecast and CAGR 2019-2025 (Volume) Figure Reducing Agents Market Size and CAGR 2013-2018 (Million USD) Figure Reducing Agents Market Size and CAGR 2013-2018 (Volume) Figure Reducing Agents Market Forecast and CAGR 2019-2025 (Million USD) Figure Reducing Agents Market Forecast ...
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GROMACS is a popular choice for scientists simulating molecular interactions. With NVIDIA Tesla K40 GPUs, its common to see 2X and 3X speedups compared to the latest multi-core CPUs.
You would not make a constant-acceleration assumption in this case. You would typically do that if you had no means of measuring the systems acceleration, but you say that it is observable for your case. The most obvious way to model this system would be using the state vector. $$ \mathbf{x_k} = \left [ \begin{array}{c}x_k \\ \dot{x}_k \\ \ddot{x}_k \end{array} \right ] = \left [ \begin{array}{c}x_k \\ v_k \\ a_k \end{array} \right ] $$. where $x_k$ is the position, $v_k$ is the velocity, and $a_k$ is the acceleration of the system at time instant $k$. Since you say that you can measure the position and acceleration of the system, the measurement vector $\mathbf{z_k}$ would be:. $$ \mathbf{z_k} = \mathbf{Hx_k} + \mathbf{v_k} $$. with. $$ \mathbf{H} = \left[ \begin{array}{cc} 1 && 0 && 0 \\ 0 && 0 && 1 \end{array} \right] $$. resulting in the measurement model:. $$ \mathbf{z_k} = \left[ \begin{array}{c} x_k \\ a_k \end{array} \right] + \mathbf{v_k} $$. where $\mathbf{v_k}$ is the (Gaussian) ...
In the present paper, the magnetohydrodynamics effects on flow parameters of blood carrying magnetic nanoparticles flowing through a stenosed artery under the influence of periodic body acceleration are investigated. Blood is assumed to behave as a Casson fluid. The governing equations are nonlinear and solved numerically using finite difference schemes. The effects of stenotic height, yield stress, magnetic field, particle concentration and mass parameters on wall shear stress, flow resistance and velocity distribution are analysed. It is found that wall shear stress and flow resistance values are considerably enhanced when an external magnetic field is applied. The velocity values of fluid and particles are appreciably reduced when a magnetic field is applied on the model. It is significant to note that the presence of nanoparticles, magnetic field and yield stress tend to increase the plug core radius. Increased wall shear stress and flow resistance affects the circulation of blood in the human
For evaluating physical function or physical activity, wearable sensors must capture kinematic or dynamic dimensions such as translational and rotational accelerations, velocities and displacements or forces and moments. Sensor measurement is captured either directly or indirectly and then further processed using additional information (e.g. boundary conditions) including those of human kinetics computer models.. The most commonly-used wearable sensors are inertial measurement units (IMUs). They contain individual or combined one-, two- or three-dimensional accelerometers and gyroscopes and have become accessible regarding measurement accuracy, size, cost, energy consumption or onboard pre-processing power through mass production, for example for automotive stability programmes and smartphones. Also magnetometers, GPS and barometer sensors are available, mostly in sensor fusion with an IMU. Wearable sensors that measure forces are yet less common and in orthopaedic publications seem restricted ...
Think about the momentum in the two situations. In any closed system, momentum must be conserved. When you accelerate a car, you push the Earth in the opposite direction with exactly the same momentum. When you want to slow down (which again is acceleration, just in direction opposite to motion), you again push the Earth, and it will be accelerated in the opposite direction. Since the Earth is much more massive than the car, the acceleration on the Earth is tiny, which makes Earth easy to push from (compare jumping on concrete with jumping on a bit of foam - the concrete is almost unyielding, which gives you a lot of leverage).. The braking and acceleration are symmetric in this case - when accelerating, you make the car move faster relative to the ground, when braking, you make it slower relative to the ground. Slowing a fast thing down on a slow thing allows you to extract useful work, pretty much the same way you can extract work from, say, an interface between a high temperature and low ...
Obesity treatment and prevention in youth is challenging. Thus, we are developing the KNOWME Network, a suite of wearable, Bluetooth-enabled wireless devices for monitoring obesity-related behaviors in minority youth. Here we present the Bluetooth-enabled Accelerometer (BEA), developed to address a lack of Bluetooth-enabled, research-quality accelerometers. The BEA provides information about body movement and orientation using an accelerometer and gyroscope combination that interfaces directly with a mobile phone/computer in real time. The accuracy of BEA-based models was assessed by estimating walking speed. Purpose: To develop personalized models for estimating treadmill walking speed using the BEA. Methods: Five subjects (4 male, 1 female; age 35 ± 12) walked at 7 speeds ranging from 2.5 to 4.0 miles per hour (mph) for 5 minutes per speed while wearing the BEA on the right hip. The BEA recorded motion information with a tri-axial accelerometer and tri-axial gyroscope and transmitted it via ...
The weight of the object at the south pole is greater than its weight at the equator because the Earths gravitational acceleration at the south pole is greater than the Earths gravitational acceleration at ...
ActiGraph is dedicated to providing our clients with highly accurate, innovative, and cost effective objective monitoring solutions to help them achieve their research and clinical data collection, analysis, and management objectives. Through close collaborative relationships with our clients, we strive to proactively identify emerging trends and understand the changing landscape of our industry, allowing us to deliver cutting edge hardware, software, and data management solutions to meet the evolving needs of the scientific community.
Velocity is the rate of motion in a specified direction and acceleration is a change in an objects velocity. Both velocity and acceleration are vector quantities in that they are based on a magnitude AND a specified direction (i.e., the car is traveling north at 55 mph). Speed, on the other hand, is an objects rate of motion. Speed is a scalar quantity and is based only on a magnitude (i.e., the car is traveling at 55 mph). Whenever there is a force, there is acceleration according to Newtons second law of motion (F = ma). A force is required to change an objects speed, and a force is required to change an objects direction. Since velocity is a quantity of speed and direction, a change in an objects speed OR a change in its direction, or both cause the object to accelerate. The force can change the speed of the object without affecting its direction (linear acceleration), or the force can change the direction of the object with or without affecting its speed (centripetal ...
So lets see... If this thing lands at the same vertical height it was launched at then (Vsin theta)^2/(2*y_max)=g and the horizontal distance is Vi^2*sin(2*theta)/g and V*cos(theta)=distance in x/time. 3 equations, 3 unknowns ...
We are already familiar with the concepts of linear velocity and linear acceleration, so angular velocity and angular acceleration are not too difficult to understand. Angular velocity is, quite sim
Research was conducted involving a series of impacts on the AFRL Horizontal Impulse Accelerator HIA, as part of a research collaboration agreement between NASA and AFRL. The purpose of the effort was to evaluate and conduct a comparison of the biodynamic response of different sized ATD head and neck configurations to support the development of computational models used to evaluate crew injury risk and aid in the design of seat and restraint systems for NASAs space vehicles and USAF air vehicles. Testing was completed using a head and neck combination from a 5th Hybrid III female aerospace ATD, a 50th Hybrid III male aerospace ATD, and a 95th Hybrid III male aerospace ATD. A test matrix was developed to assess each ATD as a function of both impact orientation, magnitude of the impact acceleration input pulse 8 to 16 G dependent on impact orientation, and rise-time or time-to-peak of the impact acceleration input pulse 50 or 100 ms. Secondary independent test variables included tests with or with-out a
Disables mouse acceleration on a computer. As written, the script disables acceleration; however, if you want to enable acceleration, just change the strValue variable to = 1.
Strategy Since we know how the potential energy changes as a function of x, we can substitute for U (x) U (x) in Equation 8. You must also increase the video memory slider to at least 128 MB. Using several examples, The Physics Classroom shows how to calculate the acceleration using a free-body diagram and Newtons second law of motion. Speed and distance-time graphs Speed is measured in metres per second (m/s) or kilometres per hour (km/h). How do you find angular acceleration? Find the initial and final angular velocity in radians/s. Find the speed and position as functions of time while. Read the velocity and time at the initial and final times you used in the previous step. To find the velocity function based on displacement, use the first derivative of f(x) = 2 1. Calculate the acceleration of the bicycle in both the cases. 1% ± 1% 4 5 4-100-- AVERAGE To collect data: On the labquest, click collect, toss the ball above the motion sensor and catch it. In physics, gravitational acceleration ...
At present, the problem of population aging has become a hot spot of international concern, especially in China, and the international community urgently needs a universally applicable health care system for the elderly. Recent research shows that falling is the biggest threat to the health of the elderly. Based on thihe physiological and behavioral characteristics of the elderly, the paper discusses an algorithm for the recognition of motion state and fall detection of elderly applied to wearable devices to ensure timely rescue after a fall. The algorithm continuously acquires acceleration information during the movement of the elderly through a six-axis acceleration sensor. Firstly, the acceleration data is filtered, then the combined acceleration is calculated, and multiple features of the continuous data are extracted, and then the softmax method is used to classify the different motion states to realize the alarm of the fall. The algorithm extracts the feature vector by the magnitude of the ...
The chain of a workshop crane is 50 m long and has a mass of 3 kg/m. It is partially wound on a drum and the effective radius from the axis of the drum to the chain centre line is 0.2 m. The drum itself, including shaft and gear wheel has a mass of 100 kg and has a radius of gyration of 0.15 m. A steel block with a mass of 500 kg is to be lifted from a point 20 m below the level of the axis of the drum. If a torque of 1.3 kNm is applied to the drum, what will be the initial vertical acceleration of the steel block ...
The speed or a velocity of an object is rarely constant. For example, it is extremely unlikely that you drive at a perfectly constant speed when you travel in your car. You have to pull out of your driveway and speed up to the speed limit. You will then have to stop at red lights and then start driving again when the light turns green. You constantly change your speed when you drive.. Acceleration is changing velocity. Velocity has two components:Speed and direction. If we change the speed of an object than the acceleration of that object will change. If we change the direction of an object than the acceleration of that object will change. If we change both speed and direction of an object than the acceleration of that object will change.. To properly measure the acceleration of an object we must also account for how quickly the object changes its velocity. If the object changes velocity quickly we can say it had a very great acceleration. So acceleration can be better described as how velocity ...
The developed method for detecting physical activity types showed a high sensitivity and specificity for sitting, standing, walking, running, walking stairs, and cycling in a standardized setting and for sitting posture during free living.
We investigated the individual muscle contribution to arm motion to better understand the complex muscular coordination underlying three-dimensional (3D) reaching tasks of the upper limb (UL). The individual contributions of biceps, triceps, deltoid anterior, medius, posterior and pectoralis major to the control of specific degrees of freedom (DOFs) were examined: using a scaled musculoskeletal model, the muscle excitations that reproduce the kinematics were calculated using computed muscle control and a forward simulation was generated. During consequent perturbation analyses, the muscle excitation of selected muscles was instantaneously increased and the resulting effect on the specific DOF was studied to quantify the muscle contribution. The calculated muscle contributions were compared to the responses elicited during electrical stimulation experiments. Innovative in our findings is that muscle action during reaching clearly depended on the reaching trajectory in 3D space. For the majority of the
You use data model acceleration to accelerate all of the fields defined in a data model. When a data model is accelerated, any pivot or report generated by that data model should complete much quicker than it would without the acceleration, even if the data model represents a significantly large dataset. There are two types of data model acceleration, ad hoc and persistent. Ad hoc acceleration applies to a single dataset, is run over all time, and exists for the duration of a users pivot session, while persistent acceleration is turned on by an admin, happens in the background, and can be scoped to shorter time ranges such as a week or a month. Persistent acceleration is used any time a search is run against a dataset in an acceleration-enabled data model. Data model acceleration makes use of Splunks high performance analytics store (HPAS) technology, which, in a manner similar to that of report acceleration, builds summaries alongside the buckets in your indexes. Also like report ...
In conclusion, none of the metrics as evaluated systematically outperformed all other metrics across a wide range of standardised kinematic conditions. However, choice of metric explains different degrees of variance in daily human physical activity.
Measures taken from the chest and left leg indicate low risk of injuries to these body regions in a crash of this severity. Forces on the head when the dummy moved forward into the airbag indicate that injuries to the head would be possible. A high head acceleration occurred when the dummys head hit the window sill/B-pillar, indicating that further injuries to the head would be possible. Forces on the right tibia and acceleration on the right foot indicate that injuries to the lower leg and foot would be possible.. ...
Measures taken from the chest and left leg indicate low risk of injuries to these body regions in a crash of this severity. Forces on the head when the dummy moved forward into the airbag indicate that injuries to the head would be possible. A high head acceleration occurred when the dummys head hit the window sill/B-pillar, indicating that further injuries to the head would be possible. Forces on the right tibia and acceleration on the right foot indicate that injuries to the lower leg and foot would be possible.. ...
s, turning it on globally should not cause any adverse drawing effects. However, because hardware acceleration is not supported for all of the 2D drawing operations, turning it on might affect some of your custom views or drawing calls. Problems usually manifest themselves as invisible elements, exceptions, or wrongly rendered pixels. To remedy this, Android gives you the option to enable or disable hardware acceleration at multiple levels. See Control hardware acceleration.. If your application performs custom drawing, test your application on actual hardware devices with hardware acceleration turned on to find any problems. The Unsupported drawing operations section describes known issues with hardware acceleration and how to work around them.. Also see OpenGL with the Framework APIs and Renderscript. ...
s, turning it on globally should not cause any adverse drawing effects. However, because hardware acceleration is not supported for all of the 2D drawing operations, turning it on might affect some of your custom views or drawing calls. Problems usually manifest themselves as invisible elements, exceptions, or wrongly rendered pixels. To remedy this, Android gives you the option to enable or disable hardware acceleration at multiple levels. See Control hardware acceleration.. If your application performs custom drawing, test your application on actual hardware devices with hardware acceleration turned on to find any problems. The Unsupported drawing operations section describes known issues with hardware acceleration and how to work around them.. Also see OpenGL with the Framework APIs and Renderscript. ...