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Calendar, using

Hypotheses about the designation of stone labyrinths can be divided into two groups calendar and non-calendar. It should be noted that despite aU the diversity of facts of non-calendar use, most part of them is often associated with time and stage of life. [Pg.177]

Author s concept of a lah)Tinth -gnomon technology solves the problem of the calendar use, and is consistent with aU elements of a wide range of symbolic interpretation of the signs of the labyrinth and Labrys. [Pg.177]

Pu/p and Paper Indust s Energy Ese-Cakndar Year 1986 New York, Apr. 20,1987 J. C. NiceUo, US. Pulp and Paper Industry s Energy Use-Calendar Year 1987 New York, May 17, SinnualEnerg) Eeview 1987 DOE/EIA-0384(87). U.S. Department of Energy, Energy Information Administration,... [Pg.50]

Mechanical or coil bindings ate used for notebooks and calendars. The pages ate coUated and special drilling equipment is used to punch holes in the paper. Metal or plastic cods ate insetted. This durable binding allows finished books to lay flat. [Pg.56]

Basic dyestuffs are usually used for dyeing of unbleached pulp in mechanical pulp such as wrapping paper, kraft paper, box board, news, and other inexpensive packaging papers. Their strong and brilliant shades also make them suitable for calendar staining and surface coloring where lightfastness is not critical. [Pg.374]

The facility manufactured (defined to include imported), processed, or otherwise used any listed chemical in quantities equal to orgreaterthan the established threshold in the course of a calendar year. [Pg.22]

Did your facility otherwise use more than 10,000 pounds of the chemical In the calendar year ... [Pg.23]

If the processing or otherwise use of similar articles results in a total release of less than 0.5 pound of a toxic chemical in a calendar year to any environmental media, EPA will allow this release quantity to be rounded to zero and the manufactured items remain exempt as articles. EPA requires facilties to round off and report all estimates to the nearest whole number. The 0.5 pound limit does not apply to each individual article, but applies to the sum of all releases from processing or use of like articles. [Pg.26]

Table II (see pages 40-48) contains the list of individual chemicals and categories of chemicals subject to 1988 calendar year reporting. Some of the chemicals listed in Table II have parenthetic qualifiers listed next to them. A chemical that is listed without a qualifier is subject to reporting in all forms in which it is manufactured, processed, and used. Table II (see pages 40-48) contains the list of individual chemicals and categories of chemicals subject to 1988 calendar year reporting. Some of the chemicals listed in Table II have parenthetic qualifiers listed next to them. A chemical that is listed without a qualifier is subject to reporting in all forms in which it is manufactured, processed, and used.
Also note that threshold determinations are based upon the actual amounts of a chemical manufactured, processed, or used over the course of the calendar year. The threshold determination may not relate to the amount of a toxic chemical brought on-site during the calendar year. For example, a stockpile of 100,000 pounds of a toxic chemical is present onsite but only 20,000 pounds is applied to a process Therefore, only the 20,000paunds processed is counted toward a threshold determination, not the entire 100,000 pounds of the stockpile... [Pg.28]

Indicate whether the chemical is manufactured (including imported), processed, or othen/vise used at the facility and the general nature of such activities and uses at the facility during the calendar year. Report activities that take place only at your facility, not activities that take place at other facilities involving your products. You must check all the blocks in this section that apply, tf you are a manufacturer of the chemical, you must check a and/or b, and at least one of c,.ji. e> orf. Refer to the definitions of manufacture," "process," and othenwise use" in the general information section of these instrilctions or section 372.3 of the rule for additional explanations. [Pg.37]

In Section 5, you must account forthe total aggregate releases of the toxic chemical to the environment from your facility for the calendar year. Releases to the environment include emissions to the air, discharges to surface waters, and on-site releases to land and underground injection wells. If you have no releases to a particular media (e.g., stack air), enter not applicable, NA do not leave any part of Section 5 blank. Check the box on the last line of this section if you use Part IV, the supplemental information sheet. [Pg.40]

Note that total annual releases of less than 0.5 pounds from the processing or otherwise use of an article maintains the article status of that item. Thus, if the only releases you have are from processing an article, and such releases are less than 0.5 pounds per year, you are not required to submit a report for that chemical. The 0.5 pound release determination does not apply to just a single article, ft applies to the cumulative releases from the processing or use of that same typ>e of article (e.g., sheet metal or plastic film) that occurs over the course of the calendar year. [Pg.41]

For reports submitted for calendar years 1987, 1988, and 1989 only, you may take advantage of range reporting for releases to an environmental medium that are less than 1,000 pounds forthe year. If you choose this option, mark one of the three boxes, 0, 1-499, or 500-999, that corresponds to releases of the chemical to the appropriate environmental medium (i.o., any line item). You are not required, however, to use these range check boxes you have the option of providing a specific value in column A.2, as described below. However, gg not mark a range and also enter a specific estimate in A.2. [Pg.42]

To determine whether you are required to report under section 313, you must ascertain whetherthe total quantity of any listed chemical orchemical compound manufactured, processed, or used at your facility over the course of the calendar year exceeds any applicable threshold. For the facility described above, determination of reporting requirement would proceed as follows. (Note In determining eligibility, you will generate Information you need to complete several portions of the form.)... [Pg.82]

Missing or incorrect reporting year. The reporting year is the calendar year during which the reported data were collected it is not the year in which the Form R is sent to EPA. Form Rs are due to EPA on July 1, 1990 for chemicals manufactured, processed or othen/vise used... [Pg.91]

Both of the sources above contain tWo types of failure rate data used in CPQRAs time-related failure rates and demand-related failure rates. Time-related failure rates, presented as failures per 10 hours, are for equipment that is normally functioning, for example, a running pump, or a temperature transmitter. Data are collected to reflect the number of equipment failures per operating hour or per calendar hour. [Pg.7]

Prior to entering any asset detail on the planning schedule, items such as holiday periods and seasonal or shutdown programs should be indicated. This can be done by the use of highlighter pens on the calendar weeks that require specific attention to loading of the relevant work tasks. [Pg.787]

Try using a daily calendar as an inexpensive, yet effective, means for scheduling. [Pg.57]

Use a calendar to mark the days you are to receive the drug and check off each time you ve done the treatment. [Pg.106]

Keep track of when the drug is taken. In the early stages of forgetfulness, a mark on the calendar each time the medicine is taken or use of a pill counter that holds the medicine for each day of the week may be used to help the patient remember to take tiie medication or if the medication lias been taken for the day. [Pg.308]

It is a good idea to use a calendar to track the treatment schedule and ovulation. [Pg.514]

Use a calendar or some other method to identify the days of each week tiie drug is taken. [Pg.528]

Hanvelt et al. (1994) estimated the nationwide indirect costs of mortality due to HIV/AIDS in Canada. A descriptive, population-based economic evaluation study was conducted. Data from Statistics Canada were used, which contained information about aU men aged 25-64 years for whom HIV/AIDS or another selected disease was listed as the underlying cause of death from 1987 to 1991. Based on the human capital approach, the present value of future earnings lost for men was calculated. The estimated total loss from 1987 to 1991 was US 2.11 billion, with an average cost of US 558,000 per death associated with HIV/AIDS. Future production loss due to HIV/AIDS was more than double during the period 1987 to 1991, from US 0.27 to US 0.60 billion. A more comprehensive update of this smdy was presented by Hanvelt et al. (1996). The same database and the same data section but for the calendar years 1987-1993 was used. The indirect cost of future production due to HIV/AIDS in Canada based on the human capital approach for that period was estimated to be US 3.28 billion. The authors also calculated the willingness-to-pay to prevent premature death due to HIV/AIDS, which was estimated based on... [Pg.364]

A randomized, double-blind, placebo-controlled trial evaluating the use of a monophasic OC containing 30 meg ethinyl estradiol and 3 mg drospirenone, a progesterone with anti-androgenic effects, showed improvement in the treatment arm compared with placebo.31 In particular, appetite, food cravings, and acne improved. However, active treatment was not associated with a statistically significant improvement in the overall outcome measure, the Calendar of Premenstrual Experiences (COPE) scale, perhaps because of the small sample size (n = 82). [Pg.762]

Satisfactory figures on the annual expenditure by growers for insecticides are not available. This varies from season to season, depending on several factors in addition to the intensity of insect infestations. It has been estimated that for the calendar year 1934 farmers and others paid about 25,000,000 for the more commonly used insecticides for the same materials the cost in 1948 would have been approximately 28,000,000. During this 14-year interval the use of agricultural insecticides had more than doubled. The estimated expenditure for insecticides in 1948 approximated 60,000,000. Interest in and appreciation of the benefits of insect control are thus apparent. [Pg.10]

Insertion (intercalation) compounds. Insertion compounds are defined as products of a reversible reaction of suitable crystalline host materials with guest molecules (ions). Guests are introduced into the host lattice, whose structure is virtually intact except for a possible increase of some lattice constants. This reaction is called topotactic. A special case of topotactic insertion is reaction with host crystals possessing stacked layered structure. In this case, we speak about intercalation (from the Latin verb intercalare, used originally for inserting an extra month, mensis intercalarius, into the calendar). [Pg.327]

The slurry was pasted on a copper foil at slow motion (<2.54 cm/s) using an automatic draw down coater available from Paul N. Gardner Co. of Pompano Beach, FL, USA) and the electrode was dried for a day under vacuum at 120°C. After this drying step, the density of the coating was adjusted to 1.45-1.55 g/cc through calendaring operation. [Pg.233]

The anodes of these two graphite samples were fabricated from a slurried mixture which contains 92 wt% of active graphite powder and 8wt% polyvinylidene difluoride (PVDF) polymer binder (Kureha 9130) and using 1 -methyl-2-pyrrolidinone (NMP) (Aldrich, >99%) as the solvent. After getting the homogenous slurry, the electrode laminates were coated on Cu current collector foil using a doctor blade in the laboratory-made laminate-coater. The laminates were then dried first at 75°C in air for 3 hrs and then the final heat treatment was carried out in a vacuum oven at 75 C for 10 hrs. Finally, the laminates were calendared to about 35% porosity in a dry room. [Pg.300]

It is well known that the radiocarbon age does not correspond to the real calendar age of an organism, since Equation (16.2) is based on assumptions that are true only to a first approximation namely, the hypothesis of a constant value of 14/f0 over time in the past. [ 10] An accurate calibration curve[ll,12] has thus to be used to convert the tRC value of a measured sample into its true age. For a complete discussion on this topic, the already cited literature on radiocarbon dating can be considered for reference. In contrast, the focus of this chapter is on how to measure the radiocarbon age tRC, i.e. how to measure uR(t). Assuming, as explained above, 14/f0 and t in Equation (16.2) are known, it is indeed clear that a measurement of 14/ (f) allows us to determine the radiocarbon age. [Pg.460]

Pesticides are considered a necessary evil however, it has been estimated that without their use food expenditure for western families would more than double (Zilberman et al. 1991) and, much worse, food shortage would be more acute in many third world countries about 40% crop production would be lost, according to FAO. Pest and pesticide control is probably the sector where a really integrated view of farm management is most required certainly, pest treatments by calendar as largely in use till a few years ago and still in use today here and there are unsustainable. The principles of targeting interventions according to real need as advocated... [Pg.61]


See other pages where Calendar, using is mentioned: [Pg.147]    [Pg.147]    [Pg.229]    [Pg.418]    [Pg.103]    [Pg.23]    [Pg.468]    [Pg.374]    [Pg.226]    [Pg.30]    [Pg.416]    [Pg.35]    [Pg.258]    [Pg.197]    [Pg.748]    [Pg.511]    [Pg.311]    [Pg.474]    [Pg.399]    [Pg.511]   
See also in sourсe #XX -- [ Pg.4 , Pg.49 ]




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Calendar

Calendaring

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